论文标题
挤压热浴中不可逆性的几何界限
Geometrical bounds on irreversibility in squeezed thermal bath
论文作者
论文摘要
不可逆的熵产生(IEP)在量子热力学过程中起重要作用。在这里,我们通过示例一个与挤压热浴的系统相结合,从而研究了非平衡热力学中IEP的几何界限。我们发现,IEP的几何界限始终以耗散和驱动的方式相反,在分别散发和耗散的情况下,上限和上限分别发生在更紧密的情况下。但是,无论是在耗散还是在逐步下,我们都可以减少IEP本身的关键时间,以及通过收获挤压效应的益处来达到平衡的关键时间,在这种效果上,IEP的值在其中量化了热力学无助性的程度,也变得更小。因此,由于挤压热浴的非平衡性质,系统浴相互作用的能量会对IEP产生显着影响,从而导致其边界的紧密度。我们的结果与热力学的第二定律无矛盾,这涉及将浴缸挤压为可用资源,这可以改善量子热力学设备的性能。
Irreversible entropy production (IEP) plays an important role in quantum thermodynamic processes. Here we investigate the geometrical bounds of IEP in nonequilibrium thermodynamics by exemplifying a system coupled to a squeezed thermal bath subject to dissipation and dephasing, respectively. We find that the geometrical bounds of the IEP always shift in contrary way under dissipation and dephasing, where the lower and upper bounds turning to be tighter occurs in the situation of dephasing and dissipation, respectively. However, either under dissipation or under dephasing, we may reduce both the critical time of the IEP itself and the critical time of the bounds for reaching an equilibrium by harvesting the benefits of squeezing effects, in which the values of the IEP, quantifying the degree of thermodynamic irreversibility, also becomes smaller. Therefore, due to the nonequilibrium nature of the squeezed thermal bath, the system-bath interaction energy brings prominent impact on the IEP, leading to tightness of its bounds. Our results are not contradictory with the second law of thermodynamics by involving squeezing of the bath as an available resource, which can improve the performance of quantum thermodynamic devices.