论文标题
约瑟夫森隧道连接中的双极热电学的相位对照
Phase-control of bipolar thermoelectricity in Josephson tunnel junctions
论文作者
论文摘要
不久前,只有通过明确破坏粒子孔对称性,就可以认为超导体中的热电学才有可能。最近,从理论上讲,由于非平衡自发的pH对称性破坏,超导隧道连接在存在大型热梯度的情况下会产生双极热电现象。然后随后遵循了第一台热电约瑟夫森发动机的实验实现。在这里,我们进行了更广泛的讨论,并专注于约瑟夫森对热电学的影响,以调节双环鱿鱼中的库珀对运输。当Cooper对准库赛占率占主流时,约瑟夫森的贡献缩短了连接,从而筛选了热电效应。我们证明,一旦约瑟夫森(Josephson)的贡献从测量的净电流中恰当地去除,因此由于纯准粒子运输而引起的热电产生是无关的。同时,我们研究了由约瑟夫森耦合的存在确定的v \ simeq0处的额外亚稳态状态,该耦合的存在尤其修改了我们的热电引擎实现的滞后行为。最后,我们还讨论了电流特性如何受到多个热电元件的存在,从而改善了生成的输出功率。
Not so long ago, thermoelectricity in superconductors was believed to be possible only by breaking explicitly the particle-hole symmetry. Recently, it has been theoretically predicted that a superconducting tunnel junction can develop bipolar thermoelectric phenomena in the presence of a large thermal gradient owing to non-equilibrium spontaneous PH symmetry breaking. The experimental realization of the first thermoelectric Josephson engine then followed. Here, we give a more extended discussion and focus on the impact of the Josephson contribution on thermoelectricity modulating the Cooper pairs transport in a double-loop SQUID. When the Cooper pairs current prevails on the quasiparticle one, the Josephson contribution short-circuits the junction thereby screening the thermoelectric effect. We demonstrate that the thermoelectric generation due to the pure quasiparticle transport is phase-independent, once Josephson contribution is appropriately removed from the net current measured. At the same time, we investigate an additional metastable state at V\simeq0 determined by the presence of the Josephson coupling, which peculiarly modifies the hysteretic behavior of our thermoelectric engine realized. At the end, we also discuss how the current-voltage characteristics are affected by the presence of multiple thermoelectric elements, which improve the generated output power.