论文标题
相互作用的量子泵中的运输波动关系
Transport fluctuation relations in interacting quantum pumps
论文作者
论文摘要
近年来,对小开放量子系统中对平衡外波动关系的理解一直是研究的重点。特别是,对于具有绝热时间依赖性驾驶的系统,这表明从固定系统中知道的波动关系不再适用于泵送电流响应的几何性质。但是,校正的抽水波动关系以及多体相互作用的作用的精确物理解释仍未得到探索。在这里,我们研究具有多体相互作用的量子系统受到时间依赖性驱动的缓慢,并表明,如果不考虑通过泵送过程中输入的总能量电流,则可以不考虑电荷电流的波动关系。此外,我们表明,仅当存在库仑相互作用时,由于输入能量引起的校正是非零的。因此,到目前为止,波动响应的关系提供了一个探测量子系统中多体相关的机会。我们在单级量子点模型的具体示例中演示了我们的一般发现,并提出了一种衡量相互作用诱导的与固定情况的差异的方案。
The understanding of out-of-equilibrium fluctuation relations in small open quantum systems has been a focal point of research in recent years. In particular, for systems with adiabatic time-dependent driving, it was shown that the fluctuation relations known from stationary systems do no longer apply due the geometric nature of the pumping current response. However, the precise physical interpretation of the corrected pumping fluctuation relations as well as the role of many-body interactions remained unexplored. Here, we study quantum systems with many-body interactions subject to slow time-dependent driving, and show that fluctuation relations of the charge current can in general not be formulated without taking into account the total energy current put into the system through the pumping process. Moreover, we show that this correction due to the input energy is nonzero only when Coulomb-interactions are present. Thus, fluctuation response relations offer an until now unrevealed opportunity to probe many-body correlations in quantum systems. We demonstrate our general findings at the concrete example of a single-level quantum dot model, and propose a scheme to measure the interaction-induced discrepancies from the stationary case.