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Quantum Sound in the Fabric of the Universe ⚡ экспресс

Original: "Collective excitations in quantum gravity condensates"
arXiv:2605.18977 · 2026-05-18 · CC BY 4.0 · ⏱ 1 min · General Relativity Quantum Gases HEP Theory
Spacetime may not be continuous, but woven from quantum threads. Their collective trembling gives rise to something like sound—and this 'ringing' might reveal itself in the expansion of the Universe.
Abstract

How does familiar spacetime emerge from quantum 'building blocks' of geometry? New research reveals that, much like sound waves rippling through a liquid, collective vibrations born from microscopic space atoms affect how the universe expands. It’s a bridge between the quantum realm and cosmology.

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The universe is not a solid monolith, but a canvas of countless quantum threads. Spacetime doesn't flow like water, but vibrates like a tapestry in the wind. For a long time, physicists only saw the overall pattern, neglecting the tremor of individual threads. But if you listen, this tremor merges into something like sound—not audible to the ear, but akin to a wave on a taut string. That's exactly what was described in a new work: the collective trembling of the universe's quantum threads. It resembles gravitational waves, only playing out at the micro level. Interestingly, this ripple slightly alters the pace at which the Universe expands. This was predicted by John Wheeler, and now the ideas developed by Carlo Rovelli are getting a precise framework. Someday, this barely perceptible ringing will be caught by telescopes—and we'll hear the quantum voice of the cosmos.

🎯 In a superfluid, sound doesn't fade—it becomes an endless echo.

🎬 The idea of quantum 'building blocks' of reality is explored in Greg Egan's science fiction novel 'Permutation City', where the universe is a giant cellular automaton.

Scientists
Adam RiessBrian SchmidtEdwin HubbleGeorges LemaîtreMaarten SchmidtSaul Perlmutter
Tags
spacetime curvature expansion of the universe gravitational waves
Laws
Hubble's lawEinstein field equationsequivalence principleLense–Thirring effectUnruh effectAdS/CFT correspondence
Original: arXiv:2605.18977 · CC BY 4.0 · bridge42worlds