Akhouri Unnati, Shandera Sarah, Yesmurzayeva Gaukhar
Institute for Gravitation and the Cosmos, The Pennsylvania State University, University Park, PA 16802, USA.
Department of Physics, The Pennsylvania State University, University Park, PA 16802, USA.
Entropy (Basel). 2023 Jun 16;25(6):947. doi: 10.3390/e25060947.
An interesting class of physical systems, including those associated with life, demonstrates the ability to hold thermalization at bay and perpetuate states of high free-energy compared to a local environment. In this work we study quantum systems with no external sources or sinks for energy, heat, work, or entropy that allow for high free-energy subsystems to form and persist. We initialize systems of qubits in mixed, uncorrelated states and evolve them subject to a conservation law. We find that four qubits make up the minimal system for which these restricted dynamics and initial conditions allow an increase in extractable work for a subsystem. On landscapes of eight co-evolving qubits, interacting in randomly selected subsystems at each step, we demonstrate that restricted connectivity and an inhomogeneous distribution of initial temperatures both lead to landscapes with longer intervals of increasing extractable work for individual qubits. We demonstrate the role of correlations that develop on the landscape in enabling a positive change in extractable work.
一类有趣的物理系统,包括那些与生命相关的系统,展现出能够抵御热化并使与局部环境相比处于高自由能状态的情况得以延续的能力。在这项工作中,我们研究没有能量、热量、功或熵的外部源或汇的量子系统,这类系统允许高自由能子系统形成并持续存在。我们将量子比特系统初始化为混合的、不相关的状态,并使其按照守恒定律演化。我们发现,四个量子比特构成了最小系统,对于该系统,这些受限的动力学和初始条件允许子系统的可提取功增加。在由八个共同演化的量子比特构成的景观中,每一步在随机选择的子系统中相互作用,我们证明受限的连通性和初始温度的不均匀分布都会导致景观中单个量子比特的可提取功增加的间隔更长。我们展示了在景观上发展起来的相关性在使可提取功产生正向变化方面所起的作用。