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At cosmological scales, Albert Einstein’s theory of general relativity has given scientists an immensely accurate blueprint ...
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⚫ Observing black holes could reveal the elusive quantum gravityBlack holes, these extreme cosmic entities, might well hold the missing clues to solve one of physics' greatest mysteries: ...
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Space.com on MSN'This is the holy grail of theoretical physics.' Is the key to quantum gravity hiding in this new way to make black holes?"This work is a step toward understanding how quantum mechanics and gravity work together, a major unsolved problem in ...
Some physicists think our reality is a kind of cosmic hologram, with space, time, and gravity as manifestations of a ...
"In quantum mechanics, time as we understand it cannot end as systems perpetually change and evolve." The scientists' ...
In our work, we discovered a quantum Penrose inequality that applies to all known examples of quantum black holes, even in the presence of strong quantum effects. The quantum Penrose inequality limits ...
By using light to emulate the structure of space-time, researchers can better understand black holes – and the exotic objects ...
Scientists created a giant vortex made of tiny quantum pieces to bring black hole physics down to Earth. Comments (1) When you purchase through links on our site, we may earn an affiliate commission.
Enrique Rico Ortega and Sofia Vallecorsa explain how quantum computing will allow physicists to model complex dynamics, from ...
One of the most perplexing discoveries in modern astronomy has been finding supermassive black holes, some weighing billions ...
Alternative black hole models incorporating quantum effects suggest singularities may not be necessary, proposing regular black holes and mimickers without central singularities.
When they are included, scientists call the black holes “quantum black holes”. These have long provided a further mystery, as we don’t know how Penrose’s conjecture works in the quantum realm.
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