论文标题

通过测量从单模热噪声中提取工作:信息有多重要?

Work extraction from single-mode thermal noise by measurements: How important is information?

论文作者

Misra, Avijit, Opatrný, Tomas, Kurizki, Gershon

论文摘要

我们在本文中的目标是在最小的量子机械设置的背景下阐明工作和信息的融合:热输入到工作输出的转换器,由以热热状态制备的单个振荡器模式以及几乎更冷的振荡器模式组成的单个振荡器模式组成。我们希望在避免使用工作物质(中型)或宏观热浴的同时,在设置中进行热量转换。考虑到设置的量子性质,我们考虑的核心问题是:(i)信息如何以及在多大程度上可以充当工作资源,或者,相反,对于工作提取而言是多余的? (ii)通过测量获得的信息提取工作的最佳方法是什么? (iii)关于在此类设置中可以实现的有关效率功率权衡的信息的影响是什么?我们比较了工作提取的效率以及通过单一(可逆)操作以及通过不同的,热和冷模式的不同,通用的测量策略来比较我们最小的(可逆)操作中功率的局限性。对于每种策略,都会发现工作和信息提取的融合,并允许擦除信息成本。还分析了通过非选择性测量的无信息获取的工作提取的可能性。总体而言,我们通过概括了一种基于我们最近提出的优化同质性的方法来介绍:以下见解:通过观察和馈电(WOF)提取工作,仅测量输入的一小部分,显然对可能的替代方案显然是有利的。我们的结果可能成为将热噪声转换为在光学设置中的有用工作的实用策略的基础,例如热光的相干放大器及其光学机械和光伏同行。

Our goal in this article is to elucidate the rapport of work and information in the context of a minimal quantum mechanical setup: A converter of heat input to work output, the input consisting of a single oscillator mode prepared in a hot thermal state along with few much colder oscillator modes. We wish to achieve heat to work conversion in the setup while avoiding the use of a working substance (medium) or macroscopic heat baths. The core issues we consider, taking account of the quantum nature of the setup, are: (i) How and to what extent can information act as work resource or, conversely, be redundant for work extraction? (ii) What is the optimal way of extracting work via information acquired by measurements? (iii) What is the bearing of information on the efficiency-power tradeoff achievable in such setups? We compare the efficiency of work extraction and the limitations of power in our minimal setup by unitary (reversible) manipulations and by different, generic, measurement strategies of the hot and cold modes. For each strategy the rapport of work and information extraction is found and the cost of information erasure is allowed for. The possibilities of work extraction without information acquisition, via non-selective measurements, are also analyzed. Overall, we present, by generalizing a method based on optimized homodyning that we have recently proposed, the following insight: extraction of work by observation and feedforward (WOF) that only measures a small fraction of the input, is clearly advantageous to the conceivable alternatives. Our results may become a basis of a practical strategy of converting thermal noise to useful work in optical setups, such as coherent amplifiers of thermal light, as well as in their optomechanical and photovoltaic counterparts.

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