Effects of magnetic anisotropy on three-qubit antiferromagnetic thermal machines.

IF 2.2 3区 物理与天体物理 Q2 PHYSICS, FLUIDS & PLASMAS Physical Review E Pub Date : 2024-10-01 DOI:10.1103/PhysRevE.110.044135
Bastian Castorene, Francisco J Peña, Ariel Norambuena, Sergio E Ulloa, Cristobal Araya, Patricio Vargas
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Abstract

This study investigates the anisotropic effects on a system of three qubits with chain and ring topology, described by the antiferromagnetic Heisenberg XXX model subjected to a homogeneous magnetic field. We explore the Stirling and Otto cycles and find that easy-axis anisotropy significantly enhances engine efficiency across all cases. At low temperatures, the ring configuration outperforms the chain on both work and efficiency during the Stirling cycle. Additionally, in both topologies, the Stirling cycle achieves Carnot efficiency with finite work at quantum critical points. In contrast, the quasistatic Otto engine also reaches Carnot efficiency at these points but yields no useful work. Notably, the Stirling cycle exhibits all thermal operational regimes-engine, refrigerator, heater, and accelerator-unlike the quasistatic Otto cycle, which functions only as an engine or refrigerator.

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磁各向异性对三比特反铁磁热机的影响。
本研究探讨了各向异性对具有链式和环式拓扑结构的三个量子比特系统的影响,该系统由反铁磁性海森堡 XXX 模型描述,并受到均匀磁场的作用。我们探讨了斯特林循环和奥托循环,发现易轴各向异性在所有情况下都能显著提高发动机效率。在低温条件下,在斯特林循环过程中,环形结构的功和效率均优于链形结构。此外,在两种拓扑结构中,斯特林循环都能在量子临界点以有限功实现卡诺效率。相比之下,准静态奥托发动机也能在这些临界点达到卡诺效率,但不能产生有用功。值得注意的是,斯特林循环展示了所有热运行状态--发动机、制冷机、加热器和加速器--而不像准静态奥托循环那样,只能作为发动机或制冷机运行。
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来源期刊
Physical Review E
Physical Review E PHYSICS, FLUIDS & PLASMASPHYSICS, MATHEMAT-PHYSICS, MATHEMATICAL
CiteScore
4.50
自引率
16.70%
发文量
2110
期刊介绍: Physical Review E (PRE), broad and interdisciplinary in scope, focuses on collective phenomena of many-body systems, with statistical physics and nonlinear dynamics as the central themes of the journal. Physical Review E publishes recent developments in biological and soft matter physics including granular materials, colloids, complex fluids, liquid crystals, and polymers. The journal covers fluid dynamics and plasma physics and includes sections on computational and interdisciplinary physics, for example, complex networks.
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