Thermodynamic properties and performance improvements of fractional Otto heat engine with repulsive bosons

IF 2.8 3区 物理与天体物理 Q2 PHYSICS, MULTIDISCIPLINARY
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引用次数: 0

Abstract

This study presents calculations of a multiparticle system within the framework of fractional quantum mechanics. We specifically explore the energy levels of a bosonic system with repulsive interactions confined in a hard-wall box. The impacts of fractional parameters on the system’s thermodynamic properties are meticulously analyzed. Furthermore, utilizing this model, we construct a quantum Otto cycle and discover that the system exhibits Bose–Fermi duality under varying fractional parameters. Intriguingly, the introduction of fractional parameters enables to optimize the performance of the quantum heat engine, edging it closer to the Carnot efficiency.

带斥玻色子的分式奥托热机的热力学特性和性能改进
本研究介绍了在分数量子力学框架内对多粒子系统的计算。我们特别探讨了被限制在硬壁盒中的具有斥力相互作用的玻色系统的能级。我们细致分析了分数参数对系统热力学性质的影响。此外,利用这一模型,我们构建了一个量子奥托循环,并发现该系统在分数参数变化的情况下表现出玻色-费米二重性。有趣的是,分数参数的引入能够优化量子热机的性能,使其更接近卡诺效率。
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来源期刊
CiteScore
7.20
自引率
9.10%
发文量
852
审稿时长
6.6 months
期刊介绍: Physica A: Statistical Mechanics and its Applications Recognized by the European Physical Society Physica A publishes research in the field of statistical mechanics and its applications. Statistical mechanics sets out to explain the behaviour of macroscopic systems by studying the statistical properties of their microscopic constituents. Applications of the techniques of statistical mechanics are widespread, and include: applications to physical systems such as solids, liquids and gases; applications to chemical and biological systems (colloids, interfaces, complex fluids, polymers and biopolymers, cell physics); and other interdisciplinary applications to for instance biological, economical and sociological systems.
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