论文标题
量子运输中的成本精致权衡关系的缺失和恢复
Absence and recovery of cost-precision tradeoff relations in quantum transport
论文作者
论文摘要
许多经典和量子系统在非平衡稳态中的运行受到成本精确(耗散范围)的权衡关系的约束,并由热力学不确定性关系(TUR)描述。但是,相干的量子电子纳米结可以逃脱这样的约束,显示有限的电荷电流和非零熵成本,并且消失了电流波动。在这里,我们分析了在不同亲和力下,费米子纳米结构的成本精确权衡关系的缺席和恢复:电压和温度偏见。通过分析工作和模拟,我们表明,如果我们将传输概率设计为棚车功能,则电荷和能量电流都可以显示出不存在成本精确的权衡 - 具有完美的传输和硬能量截止。特别是针对电压偏置的电荷电流,当我们脱离平衡时,标准TUR可能会立即违反,并且由于电压增加而被指数抑制。但是,除了理想化的,硬切割能量过滤的传输功能外,我们还表明,具有软截止或不完美的传输功能的现实模型遵循成本精致的权衡,最终恢复了远离均衡的标准TUR。因此,成本精致的权衡关系的存在被认为是逼真的非平衡量子运输连接的通用特征。
The operation of many classical and quantum systems in nonequilibrium steady state is constrained by cost-precision (dissipation-fluctuation) tradeoff relations, delineated by the thermodynamic uncertainty relation (TUR). However, coherent quantum electronic nanojunctions can escape such a constraint, showing finite charge current and nonzero entropic cost with vanishing current fluctuations. Here, we analyze the absence, and restoration, of cost-precision tradeoff relations in fermionic nanojunctions under different affinities: voltage and temperature biases. With analytic work and simulations, we show that both charge and energy currents can display the absence of cost-precision tradeoff if we engineer the transmission probability as a boxcar function -- with a perfect transmission and hard energy cutoffs. Specifically for charge current under voltage bias, the standard TUR may be immediately violated as we depart from equilibrium, and it is exponentially suppressed with increased voltage. However, beyond idealized, hard-cutoff energy-filtered transmission functions, we show that realistic models with soft cutoffs or imperfect transmission functions follow cost-precision tradeoffs, and eventually recover the standard TUR sufficiently far from equilibrium. The existence of cost-precision tradeoff relations is thus suggested as a generic feature of realistic nonequilibrium quantum transport junctions.