论文标题

在连续测量的机械谐振器中对熵产生的实验评估

Experimental assessment of entropy production in a continuously measured mechanical resonator

论文作者

Rossi, Massimiliano, Mancino, Luca, Landi, Gabriel T., Paternostro, Mauro, Schliesser, Albert, Belenchia, Alessio

论文摘要

通过测量获得的量子过程的信息在确定其非平衡热力学特性中起着至关重要的作用。我们报告了连续监测的介观量子系统的随机熵产生速率的实验推断。我们考虑了一种经受连续位移高斯测量值的光力学系统,并表征了单个轨迹的熵产生速率,然后在其随机动力学中采用了系统,并在Wigner熵方面采用了相位描述。由于我们实验的特定制度,我们能够根据调节状态根据测量结果调节状态引起的熵产生的信息贡献。我们的实验体现了朝着介绍量表的基本热力学过程进行全面控制的重要一步。

The information on a quantum process acquired through measurements plays a crucial role in the determination of its non-equilibrium thermodynamic properties. We report on the experimental inference of the stochastic entropy production rate for a continuously monitored mesoscopic quantum system. We consider an optomechanical system subjected to continuous displacement Gaussian measurements and characterise the entropy production rate of the individual trajectories followed by the system in its stochastic dynamics, employing a phase-space description in terms of the Wigner entropy. Owing to the specific regime of our experiment, we are able to single out the informational contribution to the entropy production arising from conditioning the state on the measurement outcomes. Our experiment embodies a significant step towards the demonstration of full-scale control of fundamental thermodynamic processes at the mesoscopic quantum scale.

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