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Quantum-enhanced absorption refrigerators

机译:量子增强吸收式冰箱

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摘要

Thermodynamics is a branch of science blessed by an unparalleled combination of generality of scope and formal simplicity. Based on few natural assumptions together with the four laws, it sets the boundaries between possible and impossible in macroscopic aggregates of matter. This triggered groundbreaking achievements in physics, chemistry and engineering over the last two centuries. Close analogues of those fundamental laws are now being established at the level of individual quantum systems, thus placing limits on the operation of quantum-mechanical devices. Here we study quantum absorption refrigerators, which are driven by heat rather than external work. We establish thermodynamic performance bounds for these machines and investigate their quantum origin. We also show how those bounds may be pushed beyond what is classically achievable, by suitably tailoring the environmental fluctuations via quantum reservoir engineering techniques. Such superefficient quantum-enhanced cooling realises a promising step towards the technological exploitation of autonomous quantum refrigerators.
机译:热力学是科学的一个分支,它受到范围的一般性和形式简单性的无与伦比的结合而得益。基于很少的自然假设以及这四个定律,它在宏观物质集合中设定了可能与不可能之间的界限。这触发了过去两个世纪在物理学,化学和工程领域的突破性成就。这些基本定律的近似类似物正在单个量子系统的水平上建立起来,从而限制了量子机械装置的运行。在这里,我们研究量子吸收式制冷机,该制冷机由热量驱动,而不是由外部工作驱动。我们为这些机器建立了热力学性能界限,并研究了它们的量子起源。我们还展示了如何通过量子储层工程技术适当地调整环境波动,从而将这些界限如何超越经典可实现的范围。这种超高效的量子增强冷却实现了朝着自主量子冰箱技术开发迈出的有希望的一步。

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