Department of Physics, Hong Kong University of Science and Technology, Clear Water Bay, Hong Kong, China.
Phys Rev Lett. 2023 Jun 30;130(26):266003. doi: 10.1103/PhysRevLett.130.266003.
Recently, the Josephson diode effect (JDE), in which the superconducting critical current magnitudes differ when the currents flow in opposite directions, has attracted great interest. In particular, it was demonstrated that gate-defined Josephson junctions based on magic-angle twisted bilayer graphene showed a strong nonreciprocal effect when the weak-link region is gated to a correlated insulating state at half filling (two holes per moiré cell). However, the mechanism behind such a phenomenon is not yet understood. In this Letter, we show that the interaction-driven valley polarization, together with the trigonal warping of the Fermi surface, induce the JDE. The valley polarization, which lifts the degeneracy of the states in the two valleys, induces a relative phase difference between the first and the second harmonics of the supercurrent and results in the JDE. We further show that the nontrivial current phase relation, which is responsible for the JDE, also generates the asymmetric Shapiro steps.
最近,约瑟夫森二极管效应(JDE)引起了极大的关注,即在电流反向流动时超导临界电流大小会有所不同。特别是,已经证明基于魔角扭曲双层石墨烯的栅定义约瑟夫森结在弱连接区域被栅极到半填充(每个莫尔单元两个空穴)的关联绝缘态时表现出强烈的非互易效应。然而,这种现象背后的机制尚不清楚。在这封信中,我们表明,相互作用驱动的谷极化以及费米面的三角扭曲导致了 JDE。谷极化消除了两个谷中状态的简并性,在超导电流的第一和第二谐波之间产生了相对相位差,并导致了 JDE。我们进一步表明,负责 JDE 的非平凡电流相位关系也产生了不对称的夏皮罗台阶。