论文标题

在多个时间点进行快照量子动力学

Snapshotting Quantum Dynamics at Multiple Time Points

论文作者

Wang, Pengfei, Kwon, Hyukjoon, Luan, Chun-Yang, Chen, Wentao, Qiao, Mu, Zhou, Zinan, Wang, Kaizhao, Kim, M. S., Kim, Kihwan

论文摘要

测量引起的状态干扰是在多个时间点获得量子统计数据的主要挑战。我们提出了一种从中间时间点从量子系统中提取动态信息的方法,即快照量子动力学。为此,我们在执行Ancilla辅助测量结果后采用经典的后处理以取消每个时间点的测量结果。基于此,我们重建了一个多时间准概率分布(QPD),该分布正确地恢复了相应的时间点上的概率分布。我们的方法也可以应用于同时提取与各种时间顺序的许多相关函数。我们通过采用$^{171} \ rm {yb}^+$和$^{138} \ rm {ba}^+$ $ ions作为系统和Ancilla,使用$^{171} \ rm {yb}^+$和$^{138} \ rm {yb}^+$和$^{138} \ rm {yb}^+$和$^{138} \ rm {yb}^+$,为拟议协议提供了原则证明的实验证明。多时间测量是通过反复初始化和对Ancilla状态的检测进行的,而无需直接测量系统状态。 QPD中的两次和三次QPD和相关函数可靠地从实验中可靠地重构,负性和复杂值清楚地表明了整个动力学的​​量子相干性的贡献。

Measurement-induced state disturbance is a major challenge in obtaining quantum statistics at multiple time points. We propose a method to extract dynamic information from a quantum system at intermediate time points, namely snapshotting quantum dynamics. To this end, we apply classical post-processing after performing the ancilla-assisted measurements to cancel out the impact of the measurements at each time point. Based on this, we reconstruct a multi-time quasi-probability distribution (QPD) that correctly recovers the probability distributions at the respective time points. Our approach can also be applied to simultaneously extract exponentially many correlation functions with various time-orderings. We provide a proof-of-principle experimental demonstration of the proposed protocol using a dual-species trapped-ion system by employing $^{171}\rm{Yb}^+$ and $^{138}\rm{Ba}^+$ ions as the system and the ancilla, respectively. Multi-time measurements are performed by repeated initialization and detection of the ancilla state without directly measuring the system state. The two- and three-time QPDs and correlation functions are reconstructed reliably from the experiment, negativity and complex values in the QPDs clearly indicate a contribution of the quantum coherence throughout dynamics.

扫码加入交流群

加入微信交流群

微信交流群二维码

扫码加入学术交流群,获取更多资源