自旋工程
实现(概率)
量子位元
自旋(空气动力学)
物理
量子
量子计算机
量子模拟器
微波食品加热
量子技术
伊辛模型
超导量子计算
量子力学
开放量子系统
自旋极化
统计
电子
热力学
数学
作者
Kui Zhao,Z. T. Wang,Yu Liu,Gui-Han Liang,Cai-Ping Fang,Yun‐Hao Shi,L. M. Zhang,Jiachi Zhang,Tian-Ming Li,Hao Li,Yueshan Xu,Wei-Guo Ma,Hao-Tian Liu,Jiacheng Song,Zhenan Bao,Yong-Xi Xiao,B. Chen,Cheng-Lin Deng,Zheng-He Liu,Yang He
摘要
Quantum simulation has emerged as a powerful framework for investigating complex many-body phenomena. A key requirement for emulating these dynamics is the realization of fully controllable quantum systems enabling various spin interactions. Yet, quantum simulators remain constrained in the types of attainable interactions. Here we demonstrate experimental realization of multiple microwave-engineered spin interactions in superconducting quantum circuits. By precisely controlling the native XY interaction and microwave drives, we achieve tunable spin Hamiltonians, including (i) XYZ spin models with continuously adjustable parameters, (ii) transverse-field Ising models, and (iii) Dzyaloshinskii–Moriya interacting systems. Our work expands the toolbox for analog-digital quantum simulation, paving the way for exploring a wide range of exotic quantum spin models.
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