在随机开放量子系统中,从缓慢到快速放松的动态过渡
Dror Orgad1, Vadim Oganesyan2,3, Sarang Gopalakrishnan4
1Racah Institute of Physics, The Hebrew University, Jerusalem 91904, Israel.
Physical review letters
|February 9, 2024
概括
这项研究揭示了随机量子系统中受噪声影响的三个不同的动态阶段,基于空间局部. 这些阶段决定了系统如何快速达到平衡,这对量子信息处理有影响.
科学领域:
- 量子物理学的量子物理学
- 凝聚物质理论 凝聚物质理论
- 量子信息科学是一种量子信息科学.
背景情况:
- 在环境噪音下理解量子系统对于量子技术至关重要.
- 随机量子系统中的空间局部效应尚未完全理解.
- 马科维噪声动态是环境相互作用的常见模型.
研究的目的:
- 为了研究空间局部如何影响随机量子系统的动态受到马科维噪声.
- 根据系统参数识别不同的动态阶段.
- 探索噪声强度和系统大小对放松动态的作用.
主要方法:
- 研究了一种随机的哈密尔顿和噪声合模型,该模型显示电力定律随距离的变化而衰减.
- 分析了林布拉德超运算子的光谱,以确定系统动态.
- 采用扰动理论来研究相位边界和非扰动效应.
主要成果:
- 确定了三个动态阶段,其特点是接近无特征稳定状态的速度.
- 发现了由于光谱间隙而出现的异比指数放松阶段.
- 发现了两个没有间隙的阶段与亚指数放松,区别于间隙行为与系统大小.
- 扰动理论建议与噪声强度相位过渡,但非扰动效应在热力学极限中阻止了它们.
结论:
- 空间局部显著影响噪音量子系统的放松动态.
- 该系统表现出不同的放松阶段,这对于预测其行为至关重要.
- 热力学极限效应抑制了由更简单的理论预测的相位过渡,强调了非扰动性分析的重要性.
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