Chen Chao, Ding Xing, Qin Jian, Wu Jizhou, He Yu, Lu Chao-Yang, Li Li, Liu Xiong-Jun, Sanders Barry C, Pan Jian-Wei
Hefei National Laboratory for Physical Sciences at the Microscale and Department of Modern Physics, University of Science and Technology of China, Shanghai Branch, Shanghai 201315, China.
CAS-Alibaba Quantum Computing Laboratory, CAS Centre for Excellence in Quantum Information and Quantum Physics, Shanghai 201315, China.
Phys Rev Lett. 2022 Jul 22;129(4):046401. doi: 10.1103/PhysRevLett.129.046401.
Topological insulators host topology-linked boundary states, whose spin and charge degrees of freedom could be exploited to design topological devices with enhanced functionality. We experimentally observe that dissipationless chiral edge states in a spin-orbit coupled anomalous Floquet topological phase exhibit topological spin texture on boundaries, realized via a two-dimensional quantum walk. Our experiment shows that, for a walker traveling around a closed loop along the boundary in real space, its spin evolves and winds through a great circle on the Bloch sphere, which implies that edge-spin texture has nontrivial winding. This topological spin winding is protected by a chiral-like symmetry emerging for the low-energy Hamiltonian. Our experiment confirms that two-dimensional anomalous Floquet topological systems exhibit topological spin texture on the boundary, which could inspire novel topology-based spintronic phenomena and devices.
拓扑绝缘体具有与拓扑相关的边界态,其自旋和电荷自由度可用于设计功能增强的拓扑器件。我们通过实验观察到,自旋轨道耦合反常弗洛凯拓扑相中的无耗散手性边缘态在边界上呈现拓扑自旋纹理,这是通过二维量子行走实现的。我们的实验表明,对于在实空间中沿边界绕闭环行走的粒子,其自旋在布洛赫球上沿大圆演化并缠绕,这意味着边缘自旋纹理具有非平凡的缠绕。这种拓扑自旋缠绕由低能哈密顿量出现的类似手性的对称性保护。我们的实验证实,二维反常弗洛凯拓扑系统在边界上呈现拓扑自旋纹理,这可能会激发基于拓扑的新型自旋电子现象和器件。