论文标题
在开放量子系统中足够的绝热条件
Sufficient conditions for adiabaticity in open quantum systems
论文作者
论文摘要
绝热近似在量子力学中表现出广泛的适用性,为通过缓慢变化的时间依赖性的汉密尔顿人所控制的量子系统提供了一种简单的方法。但是,标准的绝热定理是专门用于封闭量子系统的。在现实的开放系统方案中,必须考虑不可避免的系统 - 库库相互作用,这强烈影响绝热行为的概括。在本文中,我们在开放量子系统中引入了足够的绝热近似条件。这些条件很简单,但很普遍,提供了一种适当的工具,以调查在当地主方程下随时间发展的任意初始混合状态的绝热性。我们首先通过表明开放系统的绝热近似与热平衡处的量子热力学的描述兼容,在该量子平衡中,不可逆的熵产生正在消失。我们还将足够的条件作为量子控制的工具,评估了Deutsch算法的哈密顿人的绝热行为和在脱糖下的Landau-Zener模型。
The adiabatic approximation exhibits wide applicability in quantum mechanics, providing a simple approach for nontransitional dynamics in quantum systems governed by slowly varying time-dependent Hamiltonians. However, the standard adiabatic theorem is specifically derived for closed quantum systems. In a realistic open system scenario, the inevitable system-reservoir interaction must be taken into account, which strongly impacts the generalization of the adiabatic behavior. In this paper, we introduce sufficient conditions for the adiabatic approximation in open quantum systems. These conditions are simple yet general, providing a suitable instrument to investigate adiabaticity for arbitrary initial mixed states evolving under time local master equations. We first illustrate our results by showing that the adiabatic approximation for open systems is compatible with the description of quantum thermodynamics at thermal equilibrium, where irreversible entropy production is vanishing. We also apply our sufficient conditions as a tool in quantum control, evaluating the adiabatic behavior for the Hamiltonians of both the Deutsch algorithm and the Landau-Zener model under decoherence.