论文标题

D-Wave超导体连接在拓扑绝缘子表面上的二极管效应理论

Theory of diode effect in d-wave superconductor junctions on the surface of topological insulator

论文作者

Tanaka, Yukio, Lu, Bo, Nagaosa, Naoto

论文摘要

非中心对称量子材料的非偏环反应吸引了最近的密集兴趣,这对于二极管的整流功能至关重要。最近的突破是发现超导二极管效应。高度需要扩大整流效果的原理来指导超导二极管的设计。在这里,我们从理论上研究了约瑟夫森连接S/FI/S(S:$ D $ - 波超导体,FI:铁磁绝缘子)在拓扑绝缘子(TI)的表面上。 $ \sinφ$,$ \cosφ$和$ \ sin2φ$的同时存在,在Josephson Current $ i(φ)$中几乎相同的订单对于获得$ q =(i__ {c}^{c}^{c}^{+mid i_ i_ i_ i_} {c}^{c}^{ - }+mid的$ q $ factor的较大值对于获得较大的值是必不可少的。 I_ {C}^{ - } \ MID)$带有$ i_ {c}^{+} = {\ rm max}(i(φ))$和负一个$ i_ {c}^{ - } $,用于ti ti上的两个超管的宽度相位差$φ$。我们发现,它可以通过调整$ d $ - 波超导体的晶体轴和FI的磁化来显示出非常大的二极管效应。在正方向和负方向之间,最大约瑟夫森电流$ i_ {c} $的差异大约是因子2,其中电流相关关系主要是从传统的。还揭示了界面处的零能量主要结合状态的相关性。该结果可以铺平一种方法,以实现低能成本的有效超导二极管。

Nonreciprocal responses of noncentrosymmetric quantum materials attract recent intensive interests, which is essential for the rectification function in diodes. A recent breakthrough is the discovery of superconducting diode effect. The principle to enlarge rectification effect is highly desired to guide the design of superconducting diode. Here, we study theoretically the Josephson junction S/FI/S (S: $d$-wave superconductor, FI: ferromagnetic insulator) on the surface of a topological insulator (TI). The simultaneous existence of $\sinφ$, $\cosφ$ and $\sin 2φ$ terms with almost the same order in Josephson current $I(φ)$ is essential to get larger values of $Q$ factor given by $Q=(I_{c}^{+} - \mid I_{c}^{-} \mid)/ (I_{c}^{+} + \mid I_{c}^{-} \mid)$ with $I_{c}^{+}={\rm max}(I(φ))$ and the negative one $I_{c}^{-}$ for macroscopic phase difference $φ$ of two superconductors on TI. We find that it can show a very large diode effect by tuning the crystal axes of $d$-wave superconductors and the magnetization of FI. The difference of the maximum Josephson currents $I_{c}$'s between the positive and negative directions can be about factor 2, where the current-phase relation is modified largely from the conventional one. The relevance of the zero energy Majorana bound states at the interface is also revealed. This result can pave a way to realize an efficient superconducting diode with low energy cost.

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