论文标题

用超速气体探测量子速度极限

Probing Quantum Speed Limits with Ultracold Gases

论文作者

del Campo, Adolfo

论文摘要

量子速度限制(QSL)规定量子状态在任意物理过程中发展为可区分状态的最短时间。这些基本结果限制了通过非绝热能量波动设定的进化速度,量子状态传播的距离的概念,称为Bures角度。从理论上讲,我们提出了如何在限制在时间依赖的谐波陷阱中的超低量子气中测量QSL。在这种连续变量的高度尺寸系统中,禁止量子断层扫描。但是,每当动力学是自相似的时,就可以通过按时间的函数来探测QSL。当我们讨论各种超低原子系统时,这可以确定BURES角度和能量波动。

Quantum Speed Limits (QSLs) rule the minimum time for a quantum state to evolve into a distinguishable state in an arbitrary physical process. These fundamental results constrain a notion of distance travelled by the quantum state, known as the Bures angle, in terms of the speed of evolution set by nonadiabatic energy fluctuations. We theoretically propose how to measure QSLs in an ultracold quantum gas confined in a time-dependent harmonic trap. In this highly-dimensional system of continuous variables, quantum tomography is prohibited. Yet, QSLs can be probed whenever the dynamics is self-similar by measuring as a function of time the cloud size of the ultracold gas. This makes possible to determine the Bures angle and energy fluctuations, as we discuss for various ultracold atomic systems.

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