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Cooling condition for multilevel quantum absorption refrigerators

机译:多级量子吸收冰箱的冷却条件

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Models for quantum absorption refrigerators serve as test beds for exploring concepts and developing methods in quantum thermodynamics. Here we depart from the minimal, ideal design and consider a generic multilevel model for a quantum absorption refrigerator, which potentially suffers from lossy processes. Based on a full-counting statistics approach, we derive a formal cooling condition for the refrigerator, which can be feasibly evaluated analytically and numerically. We exemplify our approach on a three-level model for a quantum absorption refrigerator that suffers from different forms of nonideality (heat leakage, competition between different cooling pathways) and examine the cooling current with different designs. This study assists in identifying the cooling window of imperfect thermal machines.
机译:量子吸收冰箱的型号用作探索量子热力学中的概念和开发方法的试验台。 在这里,我们从最小,理想的设计中出发,并考虑普通吸收冰箱的通用多级模型,这可能遭受有损过程。 基于全计统计方法,我们推导了冰箱的正式冷却条件,可以在数字上和数值上可公开评估。 我们举例说明了我们对三级模型的方法,用于量子吸收冰箱,这些模型遭受不同形式的非积分(散热,不同冷却途径之间的竞争),并用不同的设计检查冷却电流。 本研究有助于识别不完美热机的冷却窗。

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