凝聚态物理
物理
超导电性
拓扑量子数
拓扑(电路)
拓扑序
绕组编号
马约拉纳
量子力学
量子
数学分析
数学
组合数学
作者
Valentin Crépel,Daniele Guerci,Jennifer Cano,J. H. Pixley,Andrew J. Millis
标识
DOI:10.1103/physrevlett.131.056001
摘要
We show that topological superconductivity may emerge upon doping of transition metal dichalcogenide heterobilayers above an integer-filling magnetic state of the topmost valence moir\'e band. The effective attraction between charge carriers is generated by an electric p-wave Feshbach resonance arising from interlayer excitonic physics and has a tuanble strength, which may be large. Together with the low moir\'e carrier densities reachable by gating, this robust attraction enables access to the long-sought p-wave BEC-BCS transition. The topological protection arises from an emergent time reversal symmetry occurring when the magnetic order and long wavelength magnetic fluctuations do not couple different valleys. The resulting topological superconductor features helical Majorana edge modes, leading to half-integer quantized spin-thermal Hall conductivity and to charge currents induced by circularly polarized light or other time-reversal symmetry-breaking fields.
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