Rosenbach Daniel, Schmitt Tobias W, Schüffelgen Peter, Stehno Martin P, Li Chuan, Schleenvoigt Michael, Jalil Abdur R, Mussler Gregor, Neumann Elmar, Trellenkamp Stefan, Golubov Alexander A, Brinkman Alexander, Grützmacher Detlev, Schäpers Thomas
Peter Grünberg Institute (PGI-9), Forschungszentrum Jülich, 52425 Jülich, Germany.
Helmholtz Virtual Institute for Topological Insulators (VITI), Forschungszentrum Jülich, 52425 Jülich, Germany.
Sci Adv. 2021 Jun 23;7(26). doi: 10.1126/sciadv.abf1854. Print 2021 Jun.
In Josephson junctions, a supercurrent across a nonsuperconducting weak link is carried by electron-hole bound states. Because of the helical spin texture of nondegenerate topological surface states, gapless bound states are established in junctions with topological weak link. These have a characteristic 4π-periodic current phase relation (CΦR) that leads to twice the conventional Shapiro step separation voltage in radio frequency-dependent measurements. In this context, we identify an attenuated first Shapiro step in (BiSb)Te (BST) Josephson junctions with AlO capping layer. We further investigate junctions on narrow, selectively deposited BST nanoribbons, where surface charges are confined to the perimeter of the nanoribbon. Within these junctions, previously identified signatures of gapless bound states are absent. Because of confinement, transverse momentum sub-bands are quantized and a topological gap opening is observed. Surface states within these quantized sub-bands are spin degenerate, which evokes bound states of conventional 2π-periodic CΦR within the BST nanoribbon weak link.
在约瑟夫森结中,穿过非超导弱连接的超电流由电子 - 空穴束缚态承载。由于非简并拓扑表面态的螺旋自旋纹理,在具有拓扑弱连接的结中建立了无隙束缚态。这些态具有特征性的4π周期电流相位关系(CΦR),这导致在射频相关测量中传统夏皮罗台阶分离电压翻倍。在此背景下,我们在具有AlO覆盖层的(BiSb)Te(BST)约瑟夫森结中识别出衰减的第一夏皮罗台阶。我们进一步研究了在窄的、选择性沉积的BST纳米带上的结,其中表面电荷被限制在纳米带的周边。在这些结中,先前确定的无隙束缚态的特征不存在。由于限制,横向动量子带被量子化,并且观察到拓扑能隙的打开。这些量子化子带内的表面态是自旋简并的,这在BST纳米带弱连接内引发了传统2π周期CΦR的束缚态。