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Speedy quantum bubbles mimic the early universe ⚡ экспресс

Original: "Resonant false vacuum decay in two dimensions on a 4000-qubit quantum annealer"
arXiv:2606.25889 · 2026-06-24 · CC BY 4.0 · ⏱ 1 min · Quantum Physics HEP Theory
A chip with 4000 tiny magnets reenacts how a runaway bubble of space could stretch the early cosmos.
Abstract

The challenge is to study the decay of metastable states through domain growth controlled by local resonant conditions. Using a programmable quantum annealer with more than 4,000 qubits, a two-dimensional quantum Ising model was implemented where a polarized state acts as a false vacuum. By precisely tuning the longitudinal magnetic field, single spin flips at the boundary of a nucleated bubble become resonant, driving kinetically constrained expansion. The experiment, complemented by tensor-network calculations and stochastic simulations, revealed nearly ballistic growth of true vacuum domains with sub-ballistic boundary broadening—consistent with Kardar–Parisi–Zhang universality. The results demonstrate a regime dominated by growth during false vacuum decay and show how large-scale quantum simulation provides access to nonequilibrium dynamics relevant to quantum field theory, cosmology, and strongly correlated systems.

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After the Big Bang, the universe may have been stuck in a false vacuum — a temporary state like a soap bubble ready to pop. A rare true vacuum bubble could then erupt, stretching space in the blink of an eye. This snap, proposed by [scientist:Alan Guth], drove a cosmic inflation — a massive expansion of the very fabric of space.

Physicists recreated this on a chip with over 4000 qubits — tiny magnets that flip between states. They set all to ‘up’, creating a false vacuum, then flipped one to start a true-vacuum bubble. By tuning a magnetic field, they made the bubble’s boundary glide without drag, expanding as if friction didn’t exist. The edge became fuzzy, following the universal shape of spreading ink or a wildfire front.

The twist: one bubble raced so fast, no others could form. This runaway flips the usual script on order from chaos, linked to rising entropy. Such simulations offer glimpses of the early universe and help design materials like exotic superconductors.

🎯 The physicist [scientist:Stephen Hawking] once explored how a false vacuum decay could spawn a whole new baby universe inside a black hole.

🎬 Science fiction envisions a stray bubble of true vacuum as reality's off switch, instantly erasing everything — a terrifying notion from 'The Three-Body Problem'.

Scientists
Alan GuthAndrei LindeGeorges LemaîtreJames PeeblesAdam RiessBrian Schmidt
Tags
big bang expansion of the universe spacetime curvature entropy
Laws
Friedmann equationsHubble's lawsecond law of thermodynamicsBekenstein-Hawking entropyEinstein field equationsPlanck's law
Original: arXiv:2606.25889 · CC BY 4.0 · bridge42worlds