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---------------------- 1801 - Entanglement - Space-Time - Wormholes
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- Is the Universe a quantum computer that safely encodes space-time in an elaborate web of entanglement?
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- General Relativity equations describe how space-time works. Quantum Mechanics uses different equations to explain how atoms work. Maybe Entanglement can equate the two theories? The combined theory would be called “ Quantum Gravity”.
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- Research is using the “ Holographic Principle”., the idea that a boundary enclosing a volume of space can contain all the information that is inside the space. Boundary walls have 2-dimensions, space has 3- immersion. Space-time has 4-dimensions. Holographically space-time may fold back on itself and have a 3-dimensional boundary.
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- The hologram would be like the label on a can of soup. The label would observe the rules of Quantum Mechanics with no gravity. Gravity would be described in the space-time inside the cylinder.
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- Quantum Entanglement links entities that share not obvious relationship
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- “Superposition” allows an electron to be spinning up ( clockwise ) and down ( counter-clockwise) at the same time. Only when it is measured or observed does it choose a single state. If two electrons are entangled ( like they are in the lowest energy shell of every atom) then when one reverses up to down the other reverses down to up instantaneously, faster than the speed of light. The Pauli Exclusion Principle forbids them in sharing the same state in the atom. Otherwise atoms would not work to form all the elements in the Periodic Table.
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- This superposition state can exist between the two electrons regardless of their distance of separation, even if lightyears apart. Entanglement appears to be equivalent to chunks of space-time physically lying together.
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- Quantum Mechanics states that empty space is not truly empty. It is full of “ virtual Particles” that blink in and out of existence. These fleeting particles are all entangled. It is suggested that the origin of having space at all requires having this entanglement.
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- The Stephen Hawking Principle for Blackholes suggests that 2 entangled particles can get split up at the Event Horizon of the Blackhole. One flies off into space , the other descends to the center of the Blackhole. In this fashion a Blackhole can “ evaporate”. It eventually all disappears into space.
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- The theory is that the Event Horizon becomes a holographic boundary containing all the information that fell into space-time inside the Blackhole. One suggestion is that a “wormhoole” connects between the particles so that they remain entangled even after the Hawking Radiation. Particles are directly connected via a shortcut through space-time.
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- Is this the connection between wormholes and entanglement?
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- The idea of Quantum Computing hopes to use this entanglement principle whereby a single state could be a one or a zero at the same time. Instead of relying on one particle to store a quantum bit the data is spread among multiple entangle particles. Quantum Computing could also use entangle photons instead of entangled electrons.
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- The space-time fabric of the Cosmos has been expanding since the Big Bang for 14 billion years. How can there ever be and edge or a holographic boundary?
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- Quantum Mechanics and General Relativity still remain disconnected in math but not in Reality. We just don’t understand it all yet!
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- The beginning of the Universe must have started as a massive Blackhole. Gravity emerges as mass warps the fabric of space-time. One suggestion is that entanglement is the needle that stitches together the Cosmic space-time tapestry. Are entangled particles simply all connected by tiny wormholes? Stay tuned , an announcement will be made shortly.
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- Other Reviews available upon request:
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- #1231 - How entanglement crosses the Universe. Calculations are made for the size of the Universe.
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- #1229 - Is the universe entangles in property pair the defy reason?
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- #1039 - Entanglement in Quantum Mechanics. People in relative motion disagree about time and place.
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- #964 Thermodynamics and the fate of the Universe. The Big Bang was at minimum Entropy when it all started.
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