论文标题
开放量子系统中的有效温度脉冲
Effective temperature pulses in open quantum systems
论文作者
论文摘要
控制纳米级量子系统的温度在开发诸如量子热阀,热发动机和冰箱之类的热设备的努力中变得越来越重要,并探索量子热力学中的基本概念。然而,实际上,产生任意时间依赖性温度与电子电压脉冲实现的温度类似。为了克服这个问题,我们在这里提出了一种完全量子机械方案,以控制开放量子系统的时间依赖性环境温度。为此,我们考虑了介导量子系统与热储层之间相互作用的量子谐波振荡器的集合,并通过调节时间调节振荡器频率可以实现有效的时间依赖温度。通过这样做,我们可以将有效的温度脉冲应用于量子系统,并且可以在环境温度以下冷却。令人惊讶的是,该方案只能使用几个振荡器来实现,因此我们的建议为控制开放量子系统的温度铺平了道路。
Controlling the temperature of nano-scale quantum systems is becoming increasingly important in the efforts to develop thermal devices such as quantum heat valves, heat engines, and refrigerators, and to explore fundamental concepts in quantum thermodynamics. In practice, however, it is challenging to generate arbitrary time-dependent temperatures, similarly to what has been achieved for electronic voltage pulses. To overcome this problem, we here propose a fully quantum mechanical scheme to control the time-dependent environment temperature of an open quantum system. To this end, we consider a collection of quantum harmonic oscillators that mediate the interactions between the quantum system and a thermal reservoir, and we show how an effective time-dependent temperature can be realized by modulating the oscillator frequencies in time. By doing so, we can apply effective temperature pulses to the quantum system, and it can be cooled below the temperature of the environment. Surprisingly, the scheme can be realized using only a few oscillators, and our proposal thereby paves the way for controlling the temperature of open quantum systems.