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Classical information driven quantum dot thermal machines

机译:经典信息驱动量子点热机

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We analyze the transient response of quantum dot thermal machines that can be driven by hyperfine interaction acting as a source of classical information. Our setup comprises a quantum dot coupled to two contacts that drive heat flow while coupled to a nuclear spin bath. The quantum dot thermal machines operate both as batteries and as engines, depending on the parameter range. The electrons in the quantum dot interact with the nuclear spins via hyperfine spin-flip processes as typically seen in solid state systems such as GaAs quantum dots. The hyperfine interaction in such systems, which is often treated as a deterrent for quantum information processing, can favorably be regarded as a driving agent for classical information flow into a heat engine setup. We relate this information flow to Landauer's erasure of the nuclear spin bath, leading to a battery operation. We further demonstrate that the setup can perform as a transient power source even under a voltage bias across the dot. Focusing on the transient thermoelectric operation, our analysis clearly indicates the role of Landauer's erasure to deliver a higher output power than a conventional quantum dot thermoelectric setup and an efficiency greater than that of an identical Carnot cycle in steady state, which is consistent with recently proposed bounds on efficiency for systems subject to a feedback controller. The role of nuclear spin relaxation processes on these aspects is also studied. Finally, we introduce the Coulomb interaction in the dot and analyze the transient thermoelectric response of the system. Our results elaborate on the effective use of somewhat undesirable scattering processes as a non-equilibrium source of Shannon information flow in thermal machines and the possibilities that may arise from the use of a quantum information source. (C) 2018 Elsevier Inc. All rights reserved.
机译:我们分析了量子点热机的瞬态响应,其可以通过用作经典信息来源的高血清交互驱动。我们的设置包括耦合到两个触点的量子点,其在耦合到核旋转浴时驱动热流。 Quantum Dot热机器随着电池和作为发动机而运行,具体取决于参数范围。量子点中的电子通过诸如GaAs量子点的固态系统中通常看出的高血清旋转过程与核旋转相互作用。这种系统中的高血清相互作用通常被视为用于量子信息处理的威慑物,可以有利地被视为用于经典信息流入热引擎设置的驱动剂。我们将这些信息与Landauer擦除核旋转浴的擦除相关,导致电池运行。我们进一步证明,即使在点跨越电压偏压下,设置也可以作为瞬态电源执行。专注于瞬态热电操作,我们的分析清楚地表明了Landauer的擦除来提供比传统的量子点热电设置更高的输出功率的作用,并且效率大于稳态的相同圆形循环的效率,这与最近提出的相同对反馈控制器的系统效率的界限。还研究了核自旋松弛过程对这些方面的作用。最后,我们介绍了点中的库仑相互作用,并分析了系统的瞬态热电响应。我们的结果详细说明了在热机中的香农信息流量的非平衡源的有效使用,以及可能因量子信息源而产生的可能性。 (c)2018年Elsevier Inc.保留所有权利。

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