首页> 外文期刊>New journal of physics >Stochastic thermodynamics based on incomplete information: generalized Jarzynski equality with measurement errors with or without feedback
【24h】

Stochastic thermodynamics based on incomplete information: generalized Jarzynski equality with measurement errors with or without feedback

机译:基于不完全信息的随机热力学:具有或不具有反馈的测量误差的广义Jarzynski等式

获取原文
           

摘要

In the derivation of fluctuation relations, and in stochastic thermodynamics in general, it is tacitly assumed that we can measure the system perfectly, i.e., without measurement errors. We here demonstrate for a driven system immersed in a single heat bath, for which the classic Jarzynski equality holds, how to relax this assumption. Based on a general measurement model akin to Bayesian inference we derive a general expression for the fluctuation relation of the measured work and we study the case of an overdamped Brownian particle and of a two-level system in particular. We then generalize our results further and incorporate feedback in our description. We show and argue that, if measurement errors are fully taken into account by the agent who controls and observes the system, the standard Jarzynski–Sagawa–Ueda relation should be formulated differently. We again explicitly demonstrate this for an overdamped Brownian particle and a two-level system where the fluctuation relation of the measured work differs significantly from the efficacy parameter introduced by Sagawa and Ueda. Instead, the generalized fluctuation relation under feedback control, , holds only for a superobserver having perfect access to both the system and detector degrees of freedom, independently of whether or not the detector yields a noisy measurement record and whether or not we perform feedback.
机译:在推导波动关系时,通常在随机热力学中,默认地假设我们可以完美地测量系统,即没有测量误差。我们在这里演示了一个浸入单个热浴中的驱动系统(经典的Jarzynski等式对此适用)如何放松这一假设。基于类似于贝叶斯推断的通用测量模型,我们得出了被测功的涨落关系的通用表达式,并且我们研究了过度阻尼的布朗粒子,特别是两级系统的情况。然后,我们进一步概括我们的结果并将反馈纳入我们的描述中。我们证明并指出,如果控制和观察系统的代理商充分考虑了测量误差,则标准的Jarzynski-Sagawa-Ueda关系应该用不同的公式表述。我们再次针对过阻尼的布朗粒子和两级系统明确证明了这一点,在这种两级系统中,测量功的波动关系与Sagawa和Ueda引入的功效参数明显不同。取而代之的是,反馈控制下的广义涨落关系仅适用于对系统和探测器自由度均具有完美访问权限的超级观察者,而与探测器是否产生嘈杂的测量记录以及是否执行反馈无关。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号