量子模拟器
拓扑序
物理
拓扑简并
里德堡原子
量子计算机
量子自旋液体
量子相
量子纠缠
拓扑(电路)
量子网络
复曲面代码
量子
量子技术
对称保护拓扑序
量子信息
物理中的拓扑熵
自旋(空气动力学)
量子力学
量子相变
开放量子系统
拓扑量子数
里德伯公式
数学
自旋极化
电子
离子
组合数学
热力学
电离
作者
Giulia Semeghini,Harry Levine,Alexander Keesling,Sepehr Ebadi,Tyler Wang,Dolev Bluvstein,Ruben Verresen,Hannes Pichler,M. W. Kalinowski,Rhine Samajdar,Ahmed Omran,Subir Sachdev,Ashvin Vishwanath,Markus Greiner,Vladan Vuletić,Mikhail D. Lukin
出处
期刊:Science
[American Association for the Advancement of Science (AAAS)]
日期:2021-12-03
卷期号:374 (6572): 1242-1247
被引量:312
标识
DOI:10.1126/science.abi8794
摘要
Quantum spin liquids, exotic phases of matter with topological order, have been a major focus in physics for the past several decades. Such phases feature long-range quantum entanglement that can potentially be exploited to realize robust quantum computation. We used a 219-atom programmable quantum simulator to probe quantum spin liquid states. In our approach, arrays of atoms were placed on the links of a kagome lattice, and evolution under Rydberg blockade created frustrated quantum states with no local order. The onset of a quantum spin liquid phase of the paradigmatic toric code type was detected by using topological string operators that provide direct signatures of topological order and quantum correlations. Our observations enable the controlled experimental exploration of topological matter and protected quantum information processing.
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