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Improved stability for quantum information storage

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⚡ Quantum Brief
A team led by physicist Pan Jianwei at USTC achieved the first experimental simulation of non-equilibrium higher-order topological phases using the Zuchongzhi 2 quantum processor, published in Science (November 2025). The breakthrough creates "quantum Lego blocks" with corner states protected by topological laws, acting as "quantum armour" against decoherence—a persistent obstacle in quantum computing stability. These synthetic matter states, non-existent in nature, localize quantum information in material corners rather than edges, drastically reducing error susceptibility from environmental noise. Pan’s method demonstrates a scalable approach to fault-tolerant quantum storage, addressing the fragility of qubits that currently limits quantum computer complexity and practicality. The advance intensifies the global race for robust quantum systems, positioning China at the forefront of next-generation quantum hardware development.
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AdvertisementScienceChinaScienceChinese scientists create super stable building block for quantum computersPhysicist Pan Jianwei and team simulate exotic new state of matter that has ‘quantum armour’ against errors and noiseReading Time:3 minutesWhy you can trust SCMP2Victoria BelaPublished: 8:07pm, 28 Nov 2025Chinese physicist Pan Jianwei and his team have created a “quantum Lego block” that refuses to fall apart – even when shaken.Using a programmable quantum processor named Zuchongzhi 2, Pan’s team has simulated an exotic new state of matter where quantum effects are locked into the corners of a material, according to a paper published in the peer-reviewed journal Science on Friday. These corner states are protected by the deep laws of topology – a kind of quantum armour against errors and noise.This achievement marks the first experimental realisation of what scientists call non-equilibrium higher-order topological phases. These offer a new way to store quantum information that does not easily break down, which has been a major challenge for quantum computers.AdvertisementPan, a professor at the University of Science and Technology of China (USTC) was once called the “father of quantum” by the journal Nature. He is now taking one of the boldest steps yet in the tech race against the US towards building practical, fault-tolerant quantum computers.In the paper, Pan, along with other researchers from USTC and Shanxi University, showed a way to simulate and detect the strange and extremely complex matter states with super stable corners or hinges instead of surfaces or edges.AdvertisementThis new kind of matter, which does not exist in nature, could allow for quantum computers to operate correctly even in the presence of errors or noise, which is a current limitation on machine complexity owing to the sensitivity of quantum bits – the fundamental units of quantum information, also known as qubits – to their environment.AdvertisementSelect VoiceChoose your listening speedGet through articles 2x faster1.25x250 WPMSlowAverageFast00:0000:001.25x

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