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Revisiting the quantum Szilard engine with fully quantum considerations

机译:充分考虑量子因素,重温量子Szilard引擎

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By considering level shifting during the insertion process we revisit the quantum Szilard engine (QSZE) with fully quantum consideration. We derive the general expressions of the heat absorbed from thermal bath and the total work done to the environment by the system in a cycle with two different cyclic strategies. We find that only the quantum information contributes to the absorbed heat, and the classical information acts like a feedback controller and has no direct effect on the absorbed heat. This is the first demonstration of the different effects of quantum information and classical information for extracting heat from the bath in the QSZE. Moreover, when the well width L → ∞ or the temperature of the bath T → ∞ the QSZE reduces to the classical Szilard engine (CSZE), and the total work satisfies the relation Wtot = k BTln2 as obtained by Sang Wook Kim et al. [S.W.Kim, T.Sagawa, S.De Liberato, M.Ueda, Phys. Rev. Lett. 106 (2011) 070401] for one particle case.
机译:通过在插入过程中考虑电平移动,我们将重新考虑具有充分量子考虑的量子Szilard引擎(QSZE)。我们推导了从热浴中吸收的热量的一般表达式,以及系统在两种不同循环策略的循环中对环境所做的总功。我们发现,只有量子信息有助于吸收热量,而经典信息的作用类似于反馈控制器,对吸收热量没有直接影响。这是量子信息和经典信息从QSZE浴中提取热量的不同影响的首次演示。此外,当井宽L→∞或熔池温度T→∞时,QSZE降低为经典的Szilard引擎(CSZE),总功满足Sang Wook Kim等人的关系Wtot = k BTln2。 [S.W. Kim,佐川T.,S.De Liberato,上田M.,物理。莱特牧师106(2011)070401]。

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