Finite-time two-spin quantum Otto engines: Shortcuts to adiabaticity vs. irreversibility

IF 1.4 Q3 PHYSICS, MULTIDISCIPLINARY
B. Çakmak
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引用次数: 5

Abstract

: We propose a quantum Otto cycle in a two spin- 1/2 anisotropic XY model in a transverse external magnetic field. We first characterize the parameter regime that the working medium operates as an engine in the adiabatic regime. Then, we consider finite-time behavior of the engine with and without utilizing a shortcut to adiabaticity (STA) technique. STA schemes guarantee that the dynamics of a system follows the adiabatic path, at the expense of introducing an external control. We compare the performance of the nonadiabatic and STA engines for a fixed adiabatic efficiency but different parameters of the working medium. We observe that, for certain parameter regimes, the irreversibility, as measured by the efficiency lags, due to finite-time driving is so low that nonadiabatic engine performs quite close to the adiabatic engine, leaving the STA engine only marginally better than the nonadiabatic one. This suggests that by designing the working medium Hamiltonian one may spare the difficulty of dealing with an external control protocol.
有限时间双自旋量子奥托发动机:绝热与不可逆的捷径
:我们在横向外磁场中提出了两自旋1/2各向异性XY模型中的量子Otto循环。我们首先描述了工作介质作为发动机在绝热状态下运行的参数状态。然后,我们考虑了在使用和不使用绝热捷径(STA)技术的情况下发动机的有限时间行为。STA方案以引入外部控制为代价,保证系统的动力学遵循绝热路径。我们比较了非绝热发动机和STA发动机在固定绝热效率但工作介质参数不同的情况下的性能。我们观察到,对于某些参数状态,由于有限时间驱动,通过效率滞后测量的不可逆性非常低,以至于非绝热发动机的性能非常接近绝热发动机,使STA发动机仅略好于非绝热发动机。这表明,通过设计工作介质哈密顿量,可以省去处理外部控制协议的困难。
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来源期刊
Turkish Journal of Physics
Turkish Journal of Physics PHYSICS, MULTIDISCIPLINARY-
CiteScore
3.50
自引率
0.00%
发文量
8
期刊介绍: The Turkish Journal of Physics is published electronically 6 times a year by the Scientific and Technological Research Council of Turkey (TÜBİTAK) and accepts English-language manuscripts in various fields of research in physics, astrophysics, and interdisciplinary topics related to physics. Contribution is open to researchers of all nationalities.
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