量子模拟器
量子传感器
量子
物理
量子相
量子位元
量子相变
量子成像
量子计算机
量子信息
量子算法
量子纠缠
量子信息科学
量子技术
量子网络
量子力学
量子动力学
开放量子系统
作者
Sepehr Ebadi,Tout T. Wang,Harry Levine,Alexander Keesling,Giulia Semeghini,Ahmed Omran,Dolev Bluvstein,Rhine Samajdar,Hannes Pichler,Wen Wei Ho,Soonwon Choi,Subir Sachdev,Markus Greiner,Vladan Vuletić,Mikhail D. Lukin
出处
期刊:Nature
[Nature Portfolio]
日期:2021-07-07
卷期号:595 (7866): 227-232
被引量:851
标识
DOI:10.1038/s41586-021-03582-4
摘要
Motivated by far-reaching applications ranging from quantum simulations of complex processes in physics and chemistry to quantum information processing1, a broad effort is currently underway to build large-scale programmable quantum systems. Such systems provide insights into strongly correlated quantum matter2-6, while at the same time enabling new methods for computation7-10 and metrology11. Here we demonstrate a programmable quantum simulator based on deterministically prepared two-dimensional arrays of neutral atoms, featuring strong interactions controlled by coherent atomic excitation into Rydberg states12. Using this approach, we realize a quantum spin model with tunable interactions for system sizes ranging from 64 to 256 qubits. We benchmark the system by characterizing high-fidelity antiferromagnetically ordered states and demonstrating quantum critical dynamics consistent with an Ising quantum phase transition in (2 + 1) dimensions13. We then create and study several new quantum phases that arise from the interplay between interactions and coherent laser excitation14, experimentally map the phase diagram and investigate the role of quantum fluctuations. Offering a new lens into the study of complex quantum matter, these observations pave the way for investigations of exotic quantum phases, non-equilibrium entanglement dynamics and hardware-efficient realization of quantum algorithms.
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