Physicists develop QBox theory beyond quantum realm

French physicists James Hefford and Matt Wilson have proposed a mathematical model called QBox, outlining a post-quantum layer of reality that could bridge quantum theory and gravity. The theory introduces 'hyperdecoherence,' allowing quantum mechanics to emerge from a deeper realm with indefinite causality. Experts praise the work as a promising step toward quantum gravity.

James Hefford at France's National Institute for Research in Digital Science and Technology and Matt Wilson at Paris-Saclay University have sketched QBox, a post-quantum theory addressing gaps in quantum mechanics when dealing with gravity-dominated large-scale phenomena. Hefford stated, “Quantum theory doesn’t describe the entire universe. One of the greatest problems in physics is to come up with a theory of quantum gravity, a theory that describes both quantum theory and gravity. That thing ought to somehow go beyond just quantum theory.” The model draws from decoherence, which explains why quantum effects vanish in everyday classical reality, proposing an analogous 'hyperdecoherence' process for quantum emergence from QBox dynamics. The research overcomes a 2018 theorem deeming hyperdecoherence impossible by relaxing certain assumptions, resulting in a realm where causality is indefinite—events can mix forward and backward influences without clear order. Carlo Maria Scandolo at the University of Calgary called this 'causal indefiniteness' relevant for quantum gravity pursuits, noting general relativity's varying cause-effect orders in spacetime. Hyperdecoherence hides temporal dimensions, blocking access to past-directed processes for quantum observers, according to Wilson. Ciarán Gilligan-Lee at Spotify's Causal Inference Research Lab commended the theory's minimalism and success in reproducing quantum mechanics. John Selby at the University of Gdańsk urged fleshing out physical details for experimental relevance. The work appears in Physical Review A, with potential tests in quantum wave overlap experiments and hints at deeper theory towers.

Makala yanayohusiana

An international team of physicists has found that quantum collapse models, potentially linked to gravity, introduce a minuscule uncertainty in time itself. This sets a fundamental limit on clock precision, though far below current detection levels. The research, published in Physical Review Research, explores ties between quantum mechanics and gravity.

Imeripotiwa na AI

Physicists have created a simple model of the universe using ultracold atoms to explore whether time arises from quantum effects rather than existing independently. The work, led by researchers at the University of Birmingham, offers new experimental support for ideas that have circulated for decades.

New research reinterprets the Einstein-Rosen bridge as a connection between two directions of time rather than a spatial shortcut. The study suggests this view could resolve the black hole information paradox and point to a universe that existed before the Big Bang. It was published in the journal Classical and Quantum Gravity.

Imeripotiwa na AI

A researcher using the Lean formalisation language has uncovered a fundamental flaw in a influential 2006 physics paper on the two Higgs doublet model. Joseph Tooby-Smith at the University of Bath made the discovery while building a library of verified physics theorems. The original authors have acknowledged the error and plan to issue an erratum.

Physicists have found evidence challenging the century-old assumption that the universe is uniform on large scales. Three new preprint papers propose tests and analyze data showing the standard FLRW model may be flawed. The results could help resolve major cosmological puzzles.

Jumatatu, 15. Mwezi wa sita 2026, 19:44:15

Oxford physicists create new Schrödinger’s cat quantum state

Jumatano, 27. Mwezi wa tano 2026, 10:23:05

Researchers design first quantum grandfather clock

Jumanne, 26. Mwezi wa tano 2026, 07:08:39

LHCb experiment finds hints of physics beyond standard model

Jumatano, 20. Mwezi wa tano 2026, 00:44:38

String theory emerges from basic physics assumptions in new study

Jumapili, 3. Mwezi wa tano 2026, 02:14:25

Physicists revisit Boltzmann brain paradox in new study

Ijumaa, 1. Mwezi wa tano 2026, 21:51:26

Oxford physicists demonstrate first quadsqueezing in quantum experiment

Alhamisi, 30. Mwezi wa nne 2026, 11:03:41

Researchers propose quantum method for messaging into past

Jumatano, 29. Mwezi wa nne 2026, 08:00:32

Physicists discover transdimensional quantum state in carbon material

Jumanne, 14. Mwezi wa nne 2026, 21:14:59

Quantum systems exhibit memory depending on perspective, scientists find

Jumamosi, 28. Mwezi wa tatu 2026, 07:59:17

University of Vienna tests indefinite causal order in quantum experiment

Tovuti hii inatumia vidakuzi

Tunatumia vidakuzi kwa uchambuzi ili kuboresha tovuti yetu. Soma sera ya faragha yetu kwa maelezo zaidi.
Kataa