Das Arpan, Mahunta Shishira, Agarwalla Bijay Kumar, Mukherjee Victor
Institute of Physics, Faculty of Physics, Astronomy and Informatics, Nicolaus Copernicus University, Grudziądzka 5/7, 87-100 Toruń, Poland.
Department of Physical Sciences, Indian Institute of Science Education and Research Berhampur, Berhampur 760010, India.
Phys Rev E. 2023 Jul;108(1-1):014137. doi: 10.1103/PhysRevE.108.014137.
We use Floquet formalism to study fluctuations in periodically modulated continuous quantum thermal machines. We present a generic theory for such machines, followed by specific examples of sinusoidal, optimal, and circular modulations, respectively. The thermodynamic uncertainty relations (TUR) hold for all modulations considered. Interestingly, in the case of sinusoidal modulation, the TUR ratio assumes a minimum at the heat engine to refrigerator transition point, while the chopped random basis optimization protocol allows us to keep the ratio small for a wide range of modulation frequencies. Furthermore, our numerical analysis suggests that TUR can show signatures of heat engine to refrigerator transition, for more generic modulation schemes. We also study bounds in fluctuations in the efficiencies of such machines; our results indicate that fluctuations in efficiencies are bounded from above for a refrigerator and from below for an engine. Overall, this study emphasizes the crucial role played by different modulation schemes in designing practical quantum thermal machines.
我们使用弗洛凯形式理论来研究周期性调制的连续量子热机中的涨落。我们给出了此类热机的一般理论,随后分别给出了正弦调制、最优调制和圆形调制的具体示例。热力学不确定性关系(TUR)适用于所考虑的所有调制情况。有趣的是,在正弦调制的情况下,TUR比率在热机向制冷机的转变点处取最小值,而截断随机基优化协议使我们能够在很宽的调制频率范围内保持该比率较小。此外,我们的数值分析表明,对于更一般的调制方案,TUR可以显示出热机向制冷机转变的特征。我们还研究了此类热机效率涨落的界限;我们的结果表明,制冷机效率的涨落有上限,而热机效率的涨落有下限。总体而言,这项研究强调了不同调制方案在设计实用量子热机中所起的关键作用。