在没有后选择障碍的情况下,监测的原子气体中的多体动力学
Gianluca Passarelli1, Xhek Turkeshi2, Angelo Russomanno3
1CNR-SPIN, c/o Complesso di Monte S. Angelo, via Cinthia-80126-Napoli, Italy.
Physical review letters
|May 3, 2024
概括
我们在被监测的原子中发现了测量诱导的相位过渡,与平均行为不同. 这种在当前设备中可观察到的过渡,为研究量子系统提供了一种新的方法,而无需选择后的问题.
科学领域:
- 量子光学就是一个量子光学.
- 原子物理 原子物理
- 量子信息科学是一种量子信息科学.
背景情况:
- 监控的量子系统表现出独特的动态,与整体平均值不同.
- 集体衰变和激光驱动显著影响原子组合.
研究的目的:
- 在激光驱动和集体衰变下调查监控的原子组合的特性.
- 探索监测协议对量子轨迹和纠的影响.
- 识别和描述测量诱导的相位过渡.
主要方法:
- 监控原子组合的理论研究.
- 在不同强度的激光驱动下分析量子轨迹.
- 计算纠缩与系统大小的纠缩量.
- 与轨迹平均密度矩阵动态的比较.
主要成果:
- 量子轨迹显示的特性与平均密度矩阵不同.
- 一个测量诱导的相位过渡发生在变化的激光驱动.
- 纠缩放量在不同的阶段中不太大.
- 临界点与平均动态中的超辐射过渡保持一致.
结论:
- 监控的原子组合表现出新的量子现象,包括测量诱导的相位过渡.
- 拟议的设置在实验上是可行的,使用当前的技术.
- 监测的动态规避了选择后的测量问题,即使监测不完美.
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