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Quantum Computers Learned to Repair Themselves ⚡ экспресс

Original: "Quantum Memory and Autonomous Computation in Two Dimensions"
arXiv:2601.20818 · 2026-01-28 · CC BY 4.0 · ⏱ 1 min · Quantum Physics
Scientists have developed a quantum computer scheme that corrects errors on its own without external help.
Abstract

Scientists have figured out how a quantum computer can correct its own errors — much like a swarm of bees working in harmony without a leader. In the new scheme, particles exchange signals according to local rules, and at low noise levels, errors hardly accumulate, while data can be stored indefinitely. Such a computer will reliably solve problems of any complexity — what will this change in our lives?

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Quantum computers have gained a built-in self-repair mechanism. The new two-dimensional scheme works like living tissue: each qubit-cell interacts with neighbors by local rules, automatically suppressing random disorder—entropy. Unlike previous methods, it doesn't require constant measurements, which themselves generate errors.

Just build a lattice of many such cells based on the standard model of quantum operations—and errors start vanishing faster as the system grows. In an infinitely large network, quantum information can be stored for as long as needed. For practical purposes, this means that even modest two-dimensional chips, feasible for production, can achieve the reliability that Peter Shor dreamed of.

The most amazing thing: the construction not only stores but also computes—any quantum algorithm. Adjusting the initial state launches fault-tolerant computations. The self-correction foundation created by John Preskill and others has finally moved from theory into real physical plane. The future of quantum machines turned out not to be in fantastic multidimensional worlds, but right here—in ordinary two-dimensional reality.

🎯 A single cosmic ray particle can corrupt data in an unprotected quantum computer—defending against such pervasive noise requires sophisticated tricks.

Scientists
Christian DopplerD. B. McLaughlinDidier QuelozMichel MayorR. A. RossiterAlbert Einstein
Tags
entropy speed of light Standard Model
Laws
second law of thermodynamicsDoppler effectprinciple of constancy of the speed of lightNoether's theoremBekenstein-Hawking entropymass–energy equivalence
Original: arXiv:2601.20818 · CC BY 4.0 · bridge42worlds