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Quantum absorption refrigerator with trapped ions

机译:捕获离子的量子吸收制冷机

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摘要

In recent years substantial efforts have been expended in extending thermodynamics to single quantum systems. Quantum effects have emerged as a resource that can improve the performance of heat machines. However in the fully quantum regime their implementation still remains a challenge. Here, we report an experimental realization of a quantum absorption refrigerator in a system of three trapped ions, with three of its normal modes of motion coupled by a trilinear Hamiltonian such that heat transfer between two modes refrigerates the third. We investigate the dynamics and steady-state properties of the refrigerator and compare its cooling capability when only thermal states are involved to the case when squeezing is employed as a quantum resource. We also study the performance of such a refrigerator in the single shot regime made possible by coherence and demonstrate cooling below both the steady-state energy and a benchmark set by classical thermodynamics.
机译:近年来,在将热力学扩展到单量子系统方面已经花费了巨大的努力。量子效应已成为一种可以提高加热机性能的资源。然而,在完全量子体系中,它们的实施仍然是一个挑战。在这里,我们报告了一个量子吸收制冷机在三个捕获离子系统中的实验实现,其三个正常运动模式由三线性哈密顿量耦合,从而两个模式之间的热传递可制冷第三个。我们研究了冰箱的动力学特性和稳态特性,并比较了仅涉及热态时的制冷能力与将压缩用作量子资源时的制冷能力。我们还研究了通过连贯性使这种冰箱在单发状态下的性能,并展示了在稳态能量和经典热力学设定的基准之下的冷却。

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