论文标题

拓扑约瑟夫森热引擎

Topological Josephson Heat Engine

论文作者

Scharf, Benedikt, Braggio, Alessandro, Strambini, Elia, Giazotto, Francesco, Hankiewicz, Ewelina M.

论文摘要

耐断层量子计算的希望使拓扑超导体成为过去十年中强烈研究的重点。在这种情况下,基于纳米线或拓扑绝缘体的拓扑约瑟夫森连接为探测拓扑超导性提供了另一种途径。作为其拓扑性质的标志,此类交界处表现出地面典型的奇偶校验,在超导相位差$ ϕ $中为$4π$ - 周期性。但是,找到这个$4π$ - 周期性的明确的实验证据仍然证明是一项艰巨的任务。在这里,我们提出了由约瑟夫森(Josephson-Strir)周期实施的拓扑约瑟夫森热引擎,作为测试地面奇偶校验的替代热力学方法。使用基于量子自旋大厅(QSH)绝缘体的约瑟夫森连接器,我们展示了如何使用热力学循环测试拓扑基态的$4π$ - 周期性,并区分均衡和非良性持续的引擎。有趣的是,我们发现平价保护通常会提高拓扑加热引擎相对于其非主张对应物的效率和功率。我们的结果不仅适用于基于QSH的连接,而且适用于任何拓扑约瑟夫森交界处,还证明了拓扑和相干热力学之间有趣而富有成果的婚姻的潜力。

The promise of fault-tolerant quantum computing has made topological superconductors the focus of intense research during the past decade. In this context, topological Josephson junctions based on nanowires or on topological insulators provide an alternative route for probing topological superconductivity. As a hallmark of their topological nature, such junctions exhibit a ground-state fermion parity that is $4π$-periodic in the superconducting phase difference $ϕ$. Finding unambiguous experimental evidence for this $4π$-periodicity still proves a difficult task, however. Here we propose a topological Josephson heat engine implemented by a Josephson-Stirling cycle as an alternative thermodynamic approach to test the ground-state parity. Using a Josephson junction based on a quantum spin Hall (QSH) insulator, we show how the thermodynamic cycle can be used to test the $4π$-periodicity of the topological ground state and to distinguish between parity-conserving and non-parity-conserving engines. Interestingly, we find that parity conservation generally boosts both the efficiency and power of the topological heat engine with respect to its non-topological counterpart. Our results, applicable not only to QSH-based junctions but also to any topological Josephson junction, demonstrate the potential of the intriguing and fruitful marriage between topology and coherent thermodynamics.

扫码加入交流群

加入微信交流群

微信交流群二维码

扫码加入学术交流群,获取更多资源