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Updated: Jun 10, 2025

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Gradient Echo Quantum Memory in Warm Atomic Vapor
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在量子处理器上长期存在的拓时间晶体秩序.
Liang Xiang1, Wenjie Jiang2, Zehang Bao1
1School of Physics, ZJU-Hangzhou Global Scientific and Technological Innovation Center, and Zhejiang Key Laboratory of Micro-nano Quantum Chips and Quantum Control, Hangzhou, China.
Nature communications
|October 17, 2024
概括
研究人员使用超导量子比特观察了一种前热拓秩序的时间晶体. 这种异国情调的物质阶段表现出时间转换对称性破坏,为量子计算研究提供了新的途径.
科学领域:
- 凝聚物质物理学 凝聚物质物理学
- 量子信息科学 量子信息科学
- 非平衡的量子动力学 量子动力学
背景情况:
- 物质的拓秩序阶段具有独特的特性,如远程纠和强度,超越了经典的兰道破对称理论.
- 周期驱动 (拓) 量子系统可以表现出在热平衡中不存在的新奇现象.
研究的目的:
- 通过实验观察预热拓学秩序的时间晶体的特征.
- 调查观察到的动力学与驱动量子系统中底层的拓秩序之间的联系.
主要方法:
- 使用可编程的超导量子比特,排列在一个方格格子中.
- 实施一个表面代码哈密尔顿和周期性驾驶协议.
- 测量非局部逻辑运算符和拓纠.
主要成果:
- 观察到离散的时间转换对称性破坏动力学,由亚和声响应证明.
- 通过非零的拓纠测量证实了拓秩序的存在.
- 研究了驱动系统中的拓纠的动力学.
结论:
- 这项研究为预热拓学上有序的时间晶体提供了实验证据.
- 展示了杂的中级量子处理器 (NISQ) 在探索物质异常非平衡阶段的潜力.
- 突出了量子系统中拓秩序和驱动动力学之间的相互作用.
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