Showing posts with label space. Show all posts
Showing posts with label space. Show all posts

Wednesday, 14 September 2016

Quantum..Weirdness...FTL...

 

Can Quantum Weirdness Be Used to Send Instant Messages Across Space and Time

Blogger Ref  http://www.p2pfoundation.net/Multi-Dimensional_Science



Giulio Prisco
By Giulio Prisco
Turing Church


Ref  Source IEET


Posted: Sep 7, 2015


Quantum physicists in the Netherlands, Spain, and the UK have confirmed in the lab that the weird instant correlations between remote “entangled” particles are real. The question that comes to mind is, can quantum weirdness be used to send instant message across space-time, faster than light?
The new experimental conformation of instant entanglement – not the first, but the strongest to date – is published on arXiv with the title “Experimental loophole-free violation of a Bell inequality using entangled electron spins separated by 1.3 km.”  See also my summary and Zeeya Merali’s summaries published at Foundational Questions Institute (FQXi) website and Nature News.

The researchers measured the spins of hundred of entangled particles in two University of Delft labs, located 1.3 km apart, and confirmed that the entangled correlations are still observed when there is not enough time for light to travel from the first lab to the second, which means that entanglement isn’t limited by the speed of light.
If the correlations between entangled particles aren’t limited by the speed of light, is it possible to send instant messages faster than light (FTL), or across time, or do even weirder forms of quantum magic?
The cover image is taken from the scientific documentary “What the Bleep Do We Know!?” – a controversial “quantum mysticism” cult film that intriguingly hints at the possibility that quantum weirdness might eventually provide a solid scientific framework for spiritual beliefs.
To be entirely honest, I want quantum physics to be weird. In “The Lifebox, the Seashell, and the Soul,” Rudy Rucker astutely observes that many people find quantum mysticism appealing because it seems to offer a scientific escape from death. “If the world is fundamentally random, then surely I’m not a robotic machine, and if I’m not a machine, then perhaps I have an immortal soul, so death isn’t so frightening.”
I plead guilty as charged – and why not? I realize that the universe doesn’t have to agree with my hopeful thinking… but perhaps it does. Time will tell.
Faster than light communications based on entanglement: No Can Do
The awesome scientific history book “How the Hippies Saved Physics,” by David Kaiser, tells the fascinating story of the Fundamental Fysiks Group – quantum physics and the psychedelic youth culture of the seventies rolled together – and shows some of the colorful scientists who dedicated years to developing schemes for FTL messaging via entanglement.

Nick Herbert and Jack Sarfatti [liked] to talk about the quantum physics and the possibilities of time travel,” wrote R.U. Sirius in his book review. “It is clear that hip young scientists in the 1970s broke through an extant taboo against exploring theoretical physics. And even if some may find their theories flakey in the extreme, we can thank them for busting open the exploration of big physics ideas.”
“And who knows. Maybe Jack Sarfatti will yet build that time machine.”
Nick Herbert’s (highly recommended) book Quantum Reality, acclaimed as one of the best popular books on quantum physics, is still very much worth reading 30 years after its first publication in 1985. Contrary to some books by other members of the Fundamental Fysiks Group, such as the very successful The Tao of Physics by Fritjof Capra, Herbert’s book doesn’t emphasize quantum mysticism but sticks to solid – though open-minded and imaginative – physics, including a very clear explanation of Bell’s theorem. Kaiser tells the story of Herbert’s imaginative and apparently solid – but ultimately unsuccessful – schemes with names like QUICK and FLASH to use entanglement for FTL communications.
John G. Cramer, a professor of physics at the University of Washington in Seattle, who also authored the excellent science fiction novels Twistor and Einstein’s Bridge, proposed schemes for spacetime communication via quantum entanglement, often discussed in his Alternate View columns on Analog Science Fiction & Fact Magazine.
Unfortunately, according to our current understanding of quantum physics, entanglement can’t be used to send FTL instant messages. Measuring the spin of one of a pair of entangled particles always gives a random result – even if the results of the two measurements are correlated – and any attempt to preset the spin of a particle would break the entanglement. A good analogy is two decks of “magic” cards that are always in the same order, but the magic only works if both decks are well shuffled first, and cheating breaks the magic.

In the image above I illustrate another good analogy, due to physicist David Bohm. Two screens in different places seem to show two fishes that exhibit weird, instantly correlated behaviors – when one turns left the other also turns left – but the screens are really showing two images of the same fish. Of course, an observer at one screen can’t send an instant message to an observer at the other screen. Nothing – zooming in, increasing the luminosity, switching the screen off – will work short of persuading the real fish to turn in one direction, which the observer can’t do.
It’s interesting that, despite the simple no-can-do analogies above, the FTL schemes devised by Herbert and Cramer seem solid and almost correct. Spotting the design flaws requires subtle reasoning, giving the impression that the universe tries to protect itself from FTL signaling.
Recently, Cramer and Herbert wrote a joint paper titled “An Inquiry into the Possibility of Nonlocal Quantum Communication” with a negative conclusion. A few days ago, Herbert criticized yet another new scheme for FTL messaging via entanglement, and concluded:
“Despite the FTL nature of the Theory that represents the World, despite the FTL nature of the Reality which underlies the World, the World Herself displays not a speck of evidence for any FTL connections.
In summary, according to our best (current) understanding of the quantum world, entanglement can’t be used to send instant FTL messages.
Non-linear quantum physics to the rescue?
FTL fans and adepts of quantum mysticism can still hope that future non-linear versions of quantum physics might allow for FTL communications, and who knows what else.
“This idea was studied in the early 1990s as a consequence of a particular nonlinear variant of quantum mechanics due to [Steven] Weinberg,” explained Barak Shoshany, a graduate student at Perimeter Institute for Theoretical Physics. “Later it was argued that any nonlinear formulation of quantum mechanics (not only in Weinberg’s framework) necessarily leads to the possibility of superluminal communication.”
Shoshany gives a list of references, all easy to find online in full text. “I show that Weinberg’s nonlinear quantum mechanics leads either to communication via Einstein-Podolsky-Rosen correlations, or to communications between branches of the wave function,” reads the abstract of one of the references, by Joseph Polchinski. In other words, either FTL instant messages to the stars, or messages to parallel universes.
“Any attempt to generalize quantum mechanics by allowing small nonlinearities in the evolution of state vectors risks the introduction of instantaneous communication between separated observers,” noted Weinberg in his “Lectures on Quantum Mechanics.”
Time will tell, and experiment will decide. In the meantime, I certainly want to read more about these fascinating topics.

Image from “What the Bleep Do We Know!?” and a PPT presentation by the author.

Giulio Prisco is a writer, technology expert, futurist and transhumanist. A former manager in European science and technology centers, he writes and speaks on a wide range of topics, including science, information technology, emerging technologies, virtual worlds, space exploration and future studies. He serves as President of the Italian Transhumanist Association.


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COMMENTS


See https://cornell.academia.edu/JackSarfatti for updates on this issue of the use of entanglement for stand-alone command-control-communication as well as super-computing around effective closed-time-like curves e.g. Seth Lloyd’s P-CTC. Weinberg’s conclusion is now obsolete for a variety of reasons. Orthodox quantum theory is a limiting case of post-quantum theory just as special relativity is a limiting case of general relativity and for the very same reason - the violation of Einstein’s generalized action-reaction principle (aka background independence). Relevant work on this is found in papers by Antony Valentini, Kent Peacock, and myself. Relevant evidence is in the brain presponse experiments Ben Libet noted by Roger Penrose in The Emperor’s New Mind replicated by Dean Radin, Dick Bierman and Daryl Bem. e.g. see https://vimeo.com/132551816 and http://arxiv.org/abs/quant-ph/0203049



On R. I. Sutherland’s Retro-Causal Action-Reaction Lagrangian Quasi-Gauge Model of Relativistically Invariant Many-Particle Entangled Bohm Pilot Wave Theory in 4D Space-Time without Many-Dimensional Configuration Space.
Jack Sarfatti
jacksarfatti@gmail.com
Internet Science Education Project
San Francisco, CA
09/05/2015
Abstract
The no-signaling arguments for orthodox quantum theory assume a violation of the general action-reaction principle that Einstein used to get from special relativity to general relativity. Special relativity had action of spacetime geometry on the geodesic motion of particles without any direct reaction of those particles back on the spacetime geometry. Similarly, Bohm and Hiley pointed out that the no-signaling property of orthodox quantum theory’s entanglement depended on the Schrodinger quantum information pilot field having “no sources.” The pilot field changed the classical world lines of particles without any direct reaction of those particles back on their quantum information pilot field. Such direct back-reaction would result in stand-alone entanglement signals. These entanglement signals seem to violate special relativity because they appear to be spacelike faster-than-the speed of light. However, R. I. Sutherland, building on the 1950’s work of O. Costa de Beauregard, I.J. Good and Fred Hoyle leading back to Wheeler and Feynman (1940 – 47) has shown that the violation of Bell’s inequality is best understood as local retrocausality that is completely relativistically invariant. John Bell knew about this, but rejected it because it seemed to him to contradict free will. Yakir Aharonov and his students as well as John Cramer and Hoyle and Narlikar have developed these ideas further since the 1950s up to the present time. Of particular experimental interest is Aephraim Steinberg’s work on photon Bohmian trajectories in space using Aharonov’s post-selected “destiny” and pre-selected “history” “weak measurement” technique. The bottom line here is that real Bohmian particle trajectories can be observed – the variables are no longer “hidden” via Aharonov’s weak measurements. This is the most parsimonious understanding of the facts minimizing the algorithmic complexity in the space of possible interpretations of orthodox quantum theory.
Rod Sutherland has shown that the lack of direct back reaction from particle to wave enforcing the no-signaling property of entanglement is precisely the old de Broglie guidance constraint that Antony Valentini characterizes as “sub-quantal equilibrium” with “signal locality” as a limiting case of a more general post-quantum theory. Hagen Kleinert has also shown that this limiting case is a WKB approximation. Violation of the de Broglie guidance constraint leads to entanglement signaling that may be equivalent to the super-computation around closed timelike curves discussed by Seth Lloyd and others. These results also apply to the Dirac fermion and the boson gauge theories in Bohmian form.
The application of post-quantum theory’s violation of the de-Broglie guidance constraint corresponding to Antony Valentini’s “sub-quantum non-equilibrium” “signal nonlocality” to naturally conscious AI machines will also be considered.



The connection to Lenny Susskind’s ER = EPR conjecture solution to the black hole firewall enigma. I first suggested ER (wormhole) = EPR (entanglement) in the 1975 book “Space-Time and Beyond” (E.P. Dutton). Orthodox quantum theory with no entanglement signaling corresponds to the wormholes pinching off before a message can get through from one mouth to the other. Post-quantum theory would then correspond to Kip Thorne’s “traversable wormhole” (1987) whose throat is kept open by amplified repulsive anti-gravity dark energy.



Yes, I was going refer Guilio Prisco to Dr. Sarfatti’s website, but it’s nice the good doctor showed up out of nowhere (teleportation?) to elucidate his insights with us. The nice thing about Dr. Sarfatti’s website is that it also links directly to breaking stories in physics, astronomy, and computer engineering developments.
the URL is-
stardrive.org




@spud100, of course I know Jack’s site.



@Jack - thanks for the explanations and the links.
I have been unable to find the full text of “On R. I. Sutherland’s Retro-Causal Action-Reaction Lagrangian Quasi-Gauge Model of Relativistically Invariant Many-Particle Entangled Bohm Pilot Wave Theory in 4D Space-Time without Many-Dimensional Configuration Space.”
After a quick glance at the papers I think (please correct em if I am wrong) you are saying that entanglement and currently understood quantum physics don’t allow FTL communications, but some kind of post-quantum physics could.
In “Lectures on Quantum Mechanics” Weinberg also says “My own conclusion (not universally shared) is that today there is no interpretation of quantum mechanics that does not have serious flaws, and that we ought to take seriously the possibility of finding some more satisfactory other theory, to which quantum mechanics is merely a good approximation.”
Valentini’s paper is very intriguing - perhaps future scientists will find magic non-quantum particles somewhere in the universe.
What do you think after many decades of searching for quantum magic? Is current quantum theory the final word (you seem to think it isn’t)? What are the most promising paths to a post-quantum theory? Will we ever be able to extract information from past times via quantum weirdness and resurrect the dead?



I am working on that paper and I will post it on academia.edu when it is finished. I am in communication with Rod Sutherland.
“you are saying that entanglement and currently understood quantum physics don’t allow FTL communications, but some kind of post-quantum physics could.”
Exactly.
“What do you think after many decades of searching for quantum magic? Is current quantum theory the final word (you seem to think it isn’t)? “
Right you are.
“What are the most promising paths to a post-quantum theory?”
My extension of Rod Sutherland’s recent advances.
“Will we ever be able to extract information from past times via quantum weirdness and resurrect the dead?”
Good question. We will be able to upload our conscious experiences to the Cloud and then download them to android bodies IF my theory of consciousness as the back-reaction of matter on its pilot waves is correct.



Watch this video https://www.youtube.com/watch?v=F0AipdgHRtI



Thanks @Jack. Could you point me to a published outline of “Rod Sutherland’s recent advances” and “your extension”? I was only able to find scattered references, and only the abstract (that you posted above) for your last paper.
How do yours and Sutherland’s ideas relate to Cramer transactional interpretation?



http://arXiv:1509.02442
However, this version differs in a critical way from his original. Rod may restore the original.
I just posted an extensive commentary on Sutherland’s paper here
https://www.academia.edu/s/f8155679b6
it is not finished still under construction
Our theories are essentially Cramer’s TI + Bohm’s be-ables, i.e. particle paths and classical gauge theory configurations. Sutherland is only concerned with orthodox quantum theory limit which precludes entanglement signaling and in which consciousness is not explained. My main concern is to break out of the orthodox quantum theory that is like being trapped inside of Plato’s Cave (see Republic Book 7).



see https://www.youtube.com/watch?v=F0AipdgHRtI

Wednesday, 4 November 2015

The Influence Vedic Philosophy had on Nikola Tesla's Idea of Free Energy


by Arjun Walia
July 23, 2014
from Collective-Evolution Website
 
 
 
 
 

 
 

The Properties of Space

 
Science works best when in harmony with nature.
 
If we put these two together, we can discover great technologies that can only come about when the consciousness of the planet is ready to embrace them.
 
One example is "free energy," also known as "zero-point energy," which utilizes the substance that exists all around us and converts it into usable energy. This would give us a limitless source of energy, and would practically wipe out all poverty on the planet. (more on this later in the article)
 
The properties of space have been postulated by many, from ancient Vedic philosophy, Eastern Mystics, various ancient civilizations throughout human history all the way to Descartes, Einstein, Newton and more.
 
Humans are curious beings, and our quest to discover "what is" will never end.
"And they allowed Apollonius to ask questions; and he asked them of what they thought the cosmos was composed; but they replied; 'Of elements'."
 
"Are there then four?" he asked.
 
"Not four," said Larchas,  "but five."
 
"And how can there be a fifth," said Apollonius, "alongside of water and air and earth and fire?"
 
"There is the ether," replied the other, "which we must regard as the stuff of which gods are made; for just as all mortal creatures inhale the wire, so do immortal and divine natures inhale the ether."
 
"Am I," said Appollonius, "to regard the universe as a living creature?"
 
"Yes," said the other.
The Life of Apollonius of Tyana, Philostratus, 220AD
Science now knows that a material universe as the foundation of what we perceive to be our physical material world isn't quite the case.
 
Today, physicists recognize that physical atoms are actually made up of vortices of energy that are constantly spinning and vibrating. At its smallest observable level, matter is energy, and this energy that exists all around us can be tapped into and possibly used to generate power.
 
Quantum physics has left many scientists baffled, again, the discovery that our physical material reality isn't really physical at all can be quite confusing.
 
Scientists began to explore the relationship between energy and the structure of matter at the turn of the 19th century, this is approximately the time when the idea of a Newtonian material universe was dropped from the heart of scientific knowing, and replaced by the fact that matter is nothing but an illusion, that everything in the universe is made out of energy.
"If quantum mechanics hasn't profoundly shocked you, you haven't understood it yet. Everything we call real is made of things that cannot be regarded as real."
Niels Bohr, a Danish Physicist
Again, if you observed the composition of an atom with a microscope, you would see a small, invisible tornado like vortex, with a number of infinitely small energy vortices called quarks and photons.
 
These are what make up the structure of the atom. As you focused in closer and closer on the structure of the atom, you would see nothing, you would observe a physical void.
 
The atom has no physical structure, we have no physical structure, physical things really don't have any physical structure.
 
Atoms are made out of invisible energy, not tangible matter.
"Despite the unrivalled empirical success of quantum theory, the very suggestion that it may be literally true as a description of nature is still greeted with cynicism, incomprehension and even anger."
T. Folger, "Quantum Shmantum"; Discover 22:37-43, 2001
 
 
"Get over it, and accept the inarguable conclusion. The universe is immaterial-mental and spiritual."
R.C. Henry, Professor of physics and Astronomy at Johns Hopkins University
 
 
 

Tesla and Ancient Vedic Philosophy  and the Properties of Space

 
We've seen a very interesting trend (especially within the past decade) of modern-day science catching up to an ancient understanding about the true nature of reality, its make-up, how it functions and how we can work with it to bring about change on our planet.
 
For anybody to label the merging of ‘spirituality' and science as pseudoscience means they have not properly investigated it.

 
Spiritual concepts of our ancient world are directly intertwined with modern-day science, more so quantum physics, and Nikola Tesla was well aware of this.
"All perceptible matter comes from a primary substance, or tenuity beyond conception, filling all space, the akasha or luminiferous ether, which is acted upon by the life giving Prana or creative force, calling into existence, in never-ending cycles all things and phenomena."
Nikola Tesla
As you can see, Tesla was aware of ancient concepts and the correlation it had with the science he was working on - using sanskrit worlds like "akasha," and "prana" to describe the force and matter that exists all around us.
 
These words come from the Upanishads (a collection of Vedic texts)
"The aakaash is not destructible, it is the primordial absolute substratum that creates cosmic matter and hence the properties of aakaash are not found in the material properties that are in a sense relative.
 
The aakaash is the eternally existent, superfluid reality, for which creation and destruction are inapplicable."
(Idham thadhakshare parame vyoman. Parame vyoman)
Paramahamsa Tewari, Engineer, Physicist and Inventor
Nikola Tesla had correlations with Swami Vivekananda (1863-1902), who was one of the most famous and influential spiritual leaders of the philosophies of Vedanta (one of the six schools of Hindu philosophy, the term originally referred to the upanishads, a collection of philosophical texts in Hinduism) and Yoga.
 
He was the chief disciple of Ramakrishna Paramahamsa and the founder of Ramakrishna Math and Ramakrishna Mission. He is a giant figure in the history of the Hindu reform movements.
 
Vivekananda wrote a later to Tesla in the late 1800's stating:
"Mr. Tesla thinks he can demonstrate mathematically that force and matter are reducible to potential energy.
 
I am to go and see him next week to get this new mathematical demonstration. In that case the Vedantic cosmology will be placed on the surest of foundations. I am working a good deal now upon the cosmology and eschatology of the Vedanta.
 
I clearly see their perfect union with modern science, and the elucidation of the one will be followed by that of the other."
Swami Vivekananda (Complete Works, VOL. V, Fifth Edition, 1347, p. 77). (1)
Tesla began using the Sanskrit words after meeting with Swami, and after studying the Eastern view of the true nature of reality, about the mechanisms that drive the material world.
 
Eventually, it led him to the basis for the wireless transmission of electrical power, what is known as the Tesla Coil Transformer.
 
During this year he made the following comments during a speech before the American Institute of Electrical Engineers. (Given before he familiarized himself with the the Vedic sincere of the Easter nations of India, Tibet, and Nepal.)
"Ere many generations pass, our machinery will be driven by a power obtainable at any point in the universe. This idea is not novel…
 
We find it in the delightful myth of Antheus, who derives power from the earth; we find it among subtle speculations of one of your splendid mathematicians… Throughout space there is energy.
 
Is this energy static, or kinetic? If static our hopes are in vain; if kinetic - and this we know it is, for certain - then it is a mere question of time when men will succeed in attaching their machinery to the very wheel work of nature."
Nikola Tesla 
The Vedas are a group of writings that consist of hymns, prayers, myths, historical accounting, science and the nature of reality. They date back at least 5000 years, and are not so different from other ancient texts that dive into the same matters from all across the globe.
 
The language used is Sanskrit and its origins are unknown.
"Swami Vivekananda was hopeful that Tesla would be able to show that what we call matter is simply potential energy because that would reconcile the teachings of the Vedas with modern science.
 
The Swami realized that in that case, the Vedantic cosmology (would) be placed on the surest of foundations. Tesla understood the Sanskrit terminology and philosophy and found that it was a good means to describe the physical mechanisms of the universe as seen through his eyes.
 
It would behoove those who would attempt to understand the science behind the inventions of Nikola Tesla to study Sanskrit and Vedic philosophy."
Toby Grotz, President, Wireless Engineering
Apparently, Tesla was unable to show the identity of energy and matter, this did not come until Albert Einstein published his paper on relativity, which was known in the East for the last 5000 years.
"All the powers in the universe are already ours. It is we who have put our hands before our eyes and cry that it is dark."
Swami Vivekananda
Tesla's vision of the wireless transmission of electricity and free energy has been postponed for almost one hundred years now.
 
Which brings us to our next topic.
 
 
 
 

What We Know Now (Today) About Free Energy

"These concepts have been proven in hundreds of laboratories throughout the world and yet they have not really seen the light of day. If these technologies were to be set free worldwide, the change would be profound, it would be applicable everywhere.
 
These technologies are absolutely the most important thing that have happened in the history of the world."
Brian O'leary, Former NASA Astronaut and Princeton Physics Professor.
Here is a video of world renowned Physicist Harold E. Puthoff.
 
An American physicist who earned his Ph.D from Stanford University. I am best familiar with his work through the declassification of the remote viewing program conducted by the CIA and NSA in conjunction with Stanford University (source 1) (source 2) (source 3). 
 
He is the director of the Institute for Advanced Studies at Austin, and has served various government agencies throughout his years.
 
 
 
 
 
 
"These are not just fringe scientists with science fiction ideas. They are mainstream ideas being published in mainstream physics journals and being taken seriously by mainstream military and NASA type funders.
 
I've been taken out on aircraft carriers by the Navy and shown what it is we have to replace if we have new energy sources to provide new fuel methods."
Dr. Harold E. Puthoff
 
 
"Back in about 1964 a researcher at the Hughes Laboratory by the name of Robert L. Forward showed that there was a particular effect, called the Casimir Effect, which demonstrated that this energy could be taped."
Dr. Harold E. Puthoff
To see some actual research, a research paper and a visual demonstration of some machinery with plans for the device, click HERE.
 
This is what Tesla was talking about when he said that man would "attach their machinery to the very wheel work of nature."
 
 
 

It's Time For  A Change

 
Our current methods for extracting energy are destroying Earth.
 
It's destroying the environment, its people and creates conflict. We are rapidly approaching a time (if not already in that time) where we need to implement systems to eliminate the use of fossil fuels.
 
I hope that this article, and the ones linked within it, show you that this is possible.
 
If you are further interested in this subject, you can check out,
  • Michael Faraday
  • Bruce DePalma
  • Paramahamsa Tewari,
...and more.
 
Energy source transitions do not happen over night. It took us 100 years to transfer from wood to coal, and another 100 years to move from coal to oil. But the next energy transition must happen quicker than previous ones, and it must include free energy.
"No pessimist ever discovered the secret of the stars or sailed an uncharted land, or opened a new doorway from the human spirit."
Helen Keller
 
 
"The day science begins to study non-physical phenomena, it will make more progress in one decade than in all the previous centuries of its existence."
Nikola Tesla
 
 
 
Sources
  1. Hunt, Inez and Draper. Wanetta, W., Lightning In His Hand, The Life Story Of Nikola Tesla, Omni Publications, Hawthorne, CA, 1981.
    O'Neal, John, J., Prodigal Genius, The Life Of Nikola Tesla, Ives Washington, Inc., 1944. Anderson, Leland, personal communication. See also Anderson, L.I., and Ratzlaff, J.T., Dr. Nikola Tesla Bibliography, Ragusan Press, 936 Industrial Avenue, Palo Alto, CA 94303, 1979. http://www.tewari.org/Books/SpititualFoundations/SF%20R12702.htm
 
 
Sources used from another article embedded in this article
 

Friday, 12 October 2012

Multiverse


From Wikipedia, the free encyclopedia

The multiverse (or meta-universe) is the hypothetical set of multiple possible universes(including the historical universe we consistently experience) that together comprise everything that exists and can exist: the entirety of spacetimematter, and energy as well as the physical laws and constants that describe them. The term was coined in 1895 by the American philosopher and psychologist William James.[1] The various universes within the multiverse are sometimes called parallel universes.
The structure of the multiverse, the nature of each universe within it and the relationship between the various constituent universes, depend on the specific multiverse hypothesis considered. Multiple universes have been hypothesized in cosmologyphysicsastronomy,religionphilosophytranspersonal psychology and fiction, particularly in science fictionand fantasy. In these contexts, parallel universes are also called "alternative universes", "quantum universes", "interpenetrating dimensions", "parallel dimensions", "parallel worlds", "alternative realities", "alternative timelines", and "dimensional planes," among others.

Contents

  [hide

[edit]Multiverse hypotheses in physics


Artistic impression of a level 2 multiverse

[edit]Tegmark's classification

Cosmologist Max Tegmark has provided a taxonomy of universes beyond the familiarobservable universe. The levels according to Tegmark's classification are arranged such that subsequent levels can be understood to encompass and expand upon previous levels, and they are briefly described below.[2][3]

[edit]Level I: Beyond our cosmological horizon

A generic prediction of chaotic inflation is an infinite ergodic universe, which, being infinite, must contain Hubble volumes realizing all initial conditions.
Accordingly, an infinite universe will contain an infinite number of Hubble volumes, all having the same physical laws and physical constants. In regard to configurations such as the distribution of matter, almost all will differ from our Hubble volume. However, because there are infinitely many, far beyond the cosmological horizon, there will eventually be Hubble volumes with similar, and even identical, configurations. Tegmark estimates that an identical volume to ours should be about 1010115 meters away from us.[4] Given infinite space, there would, in fact, be an infinite number of Hubble volumes identical to ours in the universe.[5] This follows directly from thecosmological principle, wherein it is assumed our Hubble volume is not special or unique.

[edit]Level II: Universes with different physical constants


"Bubble universes": every disk is a bubble universe (Universe 1 to Universe 6 are different bubbles; they have physical constants that are different from our universe); our universe is just one of the bubbles.
In the chaotic inflation theory, a variant of the cosmic inflation theory, the multiverse as a whole is stretching and will continue doing so forever, but some regions of space stop stretching and form distinct bubbles, like gas pockets in a loaf of rising bread. Such bubbles are embryonic level I multiverses. Linde and Vanchurin calculated the number of these universes to be on the scale of 101010,000,000.[6]
Different bubbles may experience different spontaneous symmetry breaking resulting in different properties such as different physical constants.[5]
This level also includes John Archibald Wheeler's oscillatory universe theory and Lee Smolin's fecund universes theory.

[edit]Level III: Many-worlds interpretation of quantum mechanics

Hugh Everett's many-worlds interpretation (MWI) is one of several mainstream interpretations of quantum mechanics. In brief, one aspect of quantum mechanics is that certain observations cannot be predicted absolutely. Instead, there is a range of possible observations, each with a different probability. According to the MWI, each of these possible observations corresponds to a different universe. Suppose a die is thrown that contains six sides and that the numeric result of the throw corresponds to a quantum mechanics observable. All six possible ways the die can fall correspond to six different universes. (More correctly, in MWI there is only a single universe but after the "split" into "many worlds" these cannot in general interact.)[7] Tegmark argues that a level III multiverse does not contain more possibilities in the Hubble volume than a level I-II multiverse. In effect, all the different "worlds" created by "splits" in a level III multiverse with the same physical constants can be found in some Hubble volume in a level I multiverse. Tegmark writes that "The only difference between Level I and Level III is where your doppelgängers reside. In Level I they live elsewhere in good old three-dimensional space. In Level III they live on another quantum branch in infinite-dimensional Hilbert space." Similarly, all level II bubble universes with different physical constants can in effect be found as "worlds" created by "splits" at the moment of spontaneous symmetry breaking in a level III multiverse.[5]
Related to the many-worlds idea are Richard Feynman's multiple histories interpretation and H. Dieter Zeh's many-minds interpretation.

[edit]Level IV: Ultimate Ensemble

The Ultimate Ensemble is the hypothesis of Tegmark himself. This level considers equally real all universes that can be described by different mathematical structures. Tegmark writes that "abstract mathematics is so general that any Theory Of Everything (TOE) that is definable in purely formal terms (independent of vague human terminology) is also a mathematical structure. For instance, a TOE involving a set of different types of entities (denoted by words, say) and relations between them (denoted by additional words) is nothing but what mathematicians call a set-theoretical model, and one can generally find a formal system that it is a model of." He argues this "implies that any conceivable parallel universe theory can be described at Level IV" and "subsumes all other ensembles, therefore brings closure to the hierarchy of multiverses, and there cannot be say a Level V."[8]
Jürgen Schmidhuber, however, says the "set of mathematical structures" is not even well-defined, and admits only universe representations describable by constructive mathematics, that is, computer programs. He explicitly includes universe representations describable by non-halting programs whose output bits converge after finite time, although the convergence time itself may not be predictable by a halting program, due to Kurt Gödel's limitations.[9][10][11] He also explicitly discusses the more restricted ensemble of quickly computable universes.[12]

[edit]Cyclic theories

In several theories there is a series of infinite, self-sustaining cycles (for example: an eternity of Big Bang-Big crunches).

[edit]M-theory

A multiverse of a somewhat different kind has been envisaged within the multi-dimensional extension of string theory known as M-theory, also known as Membrane Theory.[13] In M-theory our universe and others are created by collisions between p-branes in a space with 11 and 26 dimensions (the number of dimensions depends on the chirality of the observer);[14][15] each universe takes the form of aD-brane.[14][15] Objects in each universe are essentially confined to the D-brane of their universe, but may be able to interact with other universes via gravity, a force which is not restricted to D-branes.[16] This is unlike the universes in the "quantum multiverse", but both concepts can operate at the same time.

[edit]Black-hole cosmology

A black-hole cosmology is a cosmological model in which the observable Universe is the interior of a black hole existing as one of possibly many inside a larger universe.

[edit]Anthropic principle

The concept of other universes has been proposed to explain how our Universe appears to be fine-tuned for conscious life as we experience it. If there were a large (possibly infinite) number of universes, each with possibly different physical laws (or differentfundamental physical constants), some of these universes, even if very few, would have the combination of laws and fundamental parameters that are suitable for the development of matter, astronomical structures, elemental diversity, stars, and planets that can exist long enough for life to emerge and evolve. The weak anthropic principle could then be applied to conclude that we (as conscious beings) would only exist in one of those few universes that happened to be finely tuned, permitting the existence of life with developed consciousness. Thus, while the probability might be extremely small that any particular universe would have the requisite conditions for life (as we understand life) to emerge and evolve, this does not require intelligent design per the teleological argument as the only explanation for the conditions in the Universe that promote our existence in it.

[edit]Criticism

[edit]Non-scientific claims

In his NY TImes opinion piece, A Brief History of the Multiverse, author and cosmologist, Paul Davies, offers a variety of arguments that multiverse theories are non-scientific :[17]
For a start, how is the existence of the other universes to be tested? To be sure, all cosmologists accept that there are some regions of the universe that lie beyond the reach of our telescopes, but somewhere on the slippery slope between that and the idea that there are an infinite number of universes, credibility reaches a limit. As one slips down that slope, more and more must be accepted on faith, and less and less is open to scientific verification. Extreme multiverse explanations are therefore reminiscent of theological discussions. Indeed, invoking an infinity of unseen universes to explain the unusual features of the one we do see is just as ad hoc as invoking an unseen Creator. The multiverse theory may be dressed up in scientific language, but in essence it requires the same leap of faith.
— Paul Davies, A Brief History of the Multiverse
Taking cosmic inflation as a popular case in point, George Ellis provides a balanced criticism of not only the science, but as he suggests, the scientific philosophy, by which multiverse theories are generally substantiated. He, like most cosmologists, accepts Tegmark's level I “domains”, even though they lie far beyond the cosmological horizon. Likewise, the multiverse of cosmic inflation is said to exist very far away. It would be so far away, however, that it's very unlikely any evidence of an early interaction will be found. He argues that for many theorists, the lack of empirical testability or falsifiability is not a major concern. “Many physicists who talk about the multiverse, especially advocates of the string landscape, do not care much about parallel universes per se. For them, objections to the multiverse as a concept are unimportant. Their theories live or die based on internal consistency and, one hopes, eventual laboratory testing.” Although he believes there's little hope that will ever be possible, he grants that the theories on which the speculation is based, are not without scientific merit. He concludes that multiverse theory is a “productive research program”:[18]
As skeptical as I am, I think the contemplation of the multiverse is an excellent opportunity to reflect on the nature of science and on the ultimate nature of existence: why we are here… In looking at this concept, we need an open mind, though not too open. It is a delicate path to tread. Parallel universes may or may not exist; the case is unproved. We are going to have to live with that uncertainty. Nothing is wrong with scientifically based philosophical speculation, which is what multiverse proposals are. But we should name it for what it is.
— George Ellis, Scientific American, Does the Multiverse Really Exist?

[edit]Occam's razor

Critics[who?] argue that to postulate a practically infinite number of unobservable universes just to explain our own seems contrary toOccam's razor.[19]
Max Tegmark answers:
"A skeptic worries about all the information necessary to specify all those unseen worlds. But an entire ensemble is often much simpler than one of its members. This principle can be stated more formally using the notion of algorithmic information content. The algorithmic information content in a number is, roughly speaking, the length of the shortestcomputer program that will produce that number as output. For example, consider the set of all integers. Which is simpler, the whole set or just one number? Naively, you might think that a single number is simpler, but the entire set can be generated by quite a trivial computer program, whereas a single number can be hugely long. Therefore, the whole set is actually simpler. Similarly, the set of all solutions to Einstein's field equations is simpler than a specific solution. The former is described by a few equations, whereas the latter requires the specification of vast amounts of initial data on some hypersurface. The lesson is that complexity increases when we restrict our attention to one particular element in an ensemble, thereby losing the symmetry and simplicity that were inherent in the totality of all the elements taken together. In this sense, the higher-level multiverses are simpler. Going from our universe to the Level I multiverse eliminates the need to specify initial conditions, upgrading to Level II eliminates the need to specify physical constants, and the Level IV multiverse eliminates the need to specify anything at all."
He continues:
"A common feature of all four multiverse levels is that the simplest and arguably most elegant theory involves parallel universes by default. To deny the existence of those universes, one needs to complicate the theory by adding experimentally unsupported processes and ad hoc postulates: finite spacewave function collapse and ontological asymmetry. Our judgment therefore comes down to which we find more wasteful and inelegant: many worlds or many words. Perhaps we will gradually get used to the weird ways of our cosmos and find its strangeness to be part of its charm."[5]

[edit]Multiverse hypotheses in philosophy and logic

[edit]Modal realism

Possible worlds are a way of explaining probability, hypothetical statements and the like, and some philosophers such as David Lewisbelieve that all possible worlds exist, and are just as real as the actual world (a position known as modal realism).[20]

[edit]Trans-world identity

A metaphysical issue that crops up in multiverse schema that posit infinite identical copies of any given universe is that of the notion that there can be identical objects in different possible worlds. According to the counterpart theory of David Lewis, the objects should be regarded as similar rather than identical.[21][22]

[edit]Fictional realism

The view that because fictions exist, fictional characters exist as well. There are fictional entities, in the same sense in which, setting aside philosophical disputes, there are people, Mondays, numbers and planets.[23][24]

[edit]See also

[edit]References

[edit]Notes

  1. ^ James, William, The Will to Believe, 1895; and earlier in 1895, as cited in OED's new 2003 entry for "multiverse": "1895 W. JAMES in Internat. Jrnl. Ethics 6 10. Visible nature is all plasticity and indifference, a multiverse, as one might call it, and not a universe."
  2. ^ Tegmark, Max (May 2003). "Parallel Universes". Scientific American.
  3. ^ Tegmark, Max (23 January 2003) (PDF). Parallel Universes. Retrieved 7 February 2006.
  4. ^ Max Tegmark (2003). "Parallel Universes". In "Science and Ultimate Reality: from Quantum to Cosmos", honoring John Wheeler's 90th birthday. J. D. Barrow, P.C.W. Davies, & C.L. Harper eds. Cambridge University Press (2003)arXiv:astro-ph/0302131Bibcode 2003astro.ph..2131T.
  5. a b c d "Parallel universes. Not just a staple of science fiction, other universes are a direct implication of cosmological observations.", Tegmark M., Sci Am. 2003 May;288(5):40-51.
  6. ^ Zyga, Lisa "Physicists Calculate Number of Parallel Universes"PhysOrg, 16 October 2009.
  7. ^ Tegmark, Max, The Interpretation of Quantum Mechanics: Many Worlds or Many Words?, 1998. Deutsch, David, David Deutsch's Many Worlds, Frontiers, 1998.
  8. ^ Tegmark, Max (23 January 2003) (PDF). Parallel Universes. Retrieved 7 February 2006. (PDF).
  9. ^ J. Schmidhuber (1997): A Computer Scientist's View of Life, the Universe, and Everything. Lecture Notes in Computer Science, pp. 201-208, Springer: IDSIA - Dalle Molle Institute for Artificial Intelligence
  10. ^ J. Schmidhuber (2000): Algorithmic Theories of EverythingarXiv.org e-Print archive
  11. ^ J. Schmidhuber (2002): Hierarchies of generalized Kolmogorov complexities and nonenumerable universal measures computable in the limit. International Journal of Foundations of Computer Science 13(4):587-612 IDSIA - Dalle Molle Institute for Artificial Intelligence
  12. ^ J. Schmidhuber (2002): The Speed Prior: A New Simplicity Measure Yielding Near-Optimal Computable Predictions. Proc. 15th Annual Conference on Computational Learning Theory (COLT 2002), Sydney, Australia, Lecture Notes in Artificial Intelligence, pp. 216-228. Springer: IDSIA - Dalle Molle Institute for Artificial Intelligence
  13. ^ Steven Weinberg(2005)"Living in the Multiverse"
  14. a b Richard J Szabo, An introduction to string theory and D-brane dynamics (2004)
  15. a b Maurizio Gasperini, Elements of String Cosmology (2007)
  16. ^ Paul HalpernThe Great Beyond, 2005
  17. ^ Davies, Paul (12 April 2003). "A Brief History of the Multiverse"New York Times. Retrieved 16 August 2011.
  18. ^ George Ellis (2011). "Does the Multiverse Really Exist?".Scientific American 305 (2): 38–43. Retrieved 16 August 2011.
  19. ^ Trinh, Xuan Thuan (2006). Staune, Jean. ed. Science & the Search for Meaning: Perspectives from International Scientists. West Conshohocken, PA: Templeton Foundation. p. 186.ISBN 1-59947-102-7.
  20. ^ Lewis, David (1986). On the Plurality of Worlds. Basil Blackwell. ISBN 0-631-22426-2.
  21. ^ Deutsch, Harry, "Relative Identity", The Stanford Encyclopedia of Philosophy (Summer '02), Edward N. Zalta (ed.)
  22. ^ Paul B. Kantor "The Interpretation of Cultures and Possible Worlds", 1 October 2002
  23. ^ IngentaConnect Home
  24. ^ The Australian National University

[edit]Bibliography

[edit]External links

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