Youssef M, Mahler G, Obada A-S F
Institute of Theoretical Physics I, University of Stuttgart, Pfaffenwaldring 57, D-70550 Stuttgart, Germany.
Phys Rev E Stat Nonlin Soft Matter Phys. 2009 Dec;80(6 Pt 1):061129. doi: 10.1103/PhysRevE.80.061129. Epub 2009 Dec 23.
Motivated by the growing interest in the nanophysics and the field of quantum thermodynamics we study an open quantum system consisting of two spatially separated two-level atoms (spins) coupled to a quantum oscillator (resonator field mode). There is no external driving. The spins of different energy splittings are each linked to a heat bath with different temperature. We find that the temperature gradient imposed on the system together with the oscillator operating as a kind of work reservoir makes this system act as a thermodynamic machine, in particular, as a heat engine (laser). We analyze the properties of the resulting resonator field and of the engine functionality. For the latter problem we use recently developed definitions of heat flux and power as well as a test, in which the resulting field is used as an input for a heat pump.
出于对纳米物理学和量子热力学领域日益增长的兴趣,我们研究了一个开放量子系统,该系统由两个空间分离的两能级原子(自旋)与一个量子振荡器(谐振器场模式)耦合而成。不存在外部驱动。具有不同能量分裂的自旋各自与具有不同温度的热库相连。我们发现,施加在系统上的温度梯度以及作为一种功库运行的振荡器使这个系统充当一台热力机,特别是作为一台热机(激光器)。我们分析了所得谐振器场的特性以及发动机的功能。对于后一个问题,我们使用了最近开发的热通量和功率定义以及一种测试,其中将所得场用作热泵的输入。