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Новый эксперимент, в котором время исчезает

Aug 9, 2026 25 min
quantum mechanicstimephysicscosmologyrelativity
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Summary

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This video explores the concept of time in physics, referencing experiments with cold atoms and quantum mechanics. It questions whether time is a universal constant or emerges from quantum correlations, suggesting that our perception of time might be tied to information and ignorance about the universe's underlying processes.

This explainer delves into the nature of time, moving from the familiar concept of universal, constant time to more complex quantum and relativistic perspectives. It references experiments with ultra-cold atoms, Bose-Einstein condensates, and quantum entanglement to illustrate how time might be an emergent phenomenon rather than a fundamental constant. The video highlights the problem of time in quantum gravity and explores the idea that time and its arrow might originate from ignorance about the universe's deeper workings. It questions whether time exists independently or is merely a relational construct dependent on the states of interacting systems. The experiment discussed involves creating a mini-universe within a lab setting, where time's flow can be manipulated by altering correlations and entropy, suggesting a potential for controlling time at the quantum level.

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Worth watching if: Viewers interested in fundamental physics, quantum mechanics, cosmology, and the philosophical implications of time will find this video engaging. It offers a thought-provoking exploration of complex scientific concepts.

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