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首页> 外文期刊>Physical Review, A >Verifying detailed fluctuation relations for discrete feedback-controlled quantum dynamics
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Verifying detailed fluctuation relations for discrete feedback-controlled quantum dynamics

机译:验证离散反馈控制量子动态的详细波动关系

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Discrete quantum feedback control consists of a managed dynamics according to the information acquired by a previous measurement. Energy fluctuations along such dynamics satisfy generalized fluctuation relations, which are useful tools to study the thermodynamics of systems far away from equilibrium. Due to the practical challenge to assess energy fluctuations in the quantum scenario, the experimental verification of detailed fluctuation relations in the presence of feedback control remains elusive.We present a feasible method to experimentally verify detailed fluctuation relations for discrete feedback control quantum dynamics. Two detailed fluctuation relations are developed and employed. The method is based on a quantum interferometric strategy that allows the verification of fluctuation relations in the presence of feedback control. An analytical example to illustrate the applicability of the method is discussed. The comprehensive technique introduced here can be experimentally implemented at a microscale with the current technology in a variety of experimental platforms.
机译:离散量子反馈控制包括根据先前测量获取的信息的受管动态。沿着这种动态的能量波动满足广义波动关系,这是研究远离均衡的系统热力学的有用工具。由于以评估在量子场景的能量波动的实际挑战,在反馈控制的存在详细波动关系的实验验证仍然elusive.We本一种可行的方法来实验来验证用于离散反馈控制量子动力学详述波动关系。开发并雇用了两个详细的波动关系。该方法基于量子干涉策略,其允许在存在反馈控制的情况下验证波动关系。讨论了说明该方法的适用性的分析示例。这里介绍的综合技术可以在Microscale中通过各种实验平台进行实验地实现。

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