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Gate-Defined Topological Josephson Junctions in Bernal Bilayer Graphene.
Xie, Ying-Ming; Lantagne-Hurtubise, Étienne; Young, Andrea F; Nadj-Perge, Stevan; Alicea, Jason.
Afiliação
  • Xie YM; Department of Physics, Hong Kong University of Science and Technology, Clear Water Bay, Hong Kong, China.
  • Lantagne-Hurtubise É; Department of Physics, California Institute of Technology, Pasadena, California 91125, USA.
  • Young AF; Institute for Quantum Information and Matter, California Institute of Technology, Pasadena, California 91125, USA.
  • Nadj-Perge S; Department of Physics, California Institute of Technology, Pasadena, California 91125, USA.
  • Alicea J; Institute for Quantum Information and Matter, California Institute of Technology, Pasadena, California 91125, USA.
Phys Rev Lett ; 131(14): 146601, 2023 Oct 06.
Article em En | MEDLINE | ID: mdl-37862641
ABSTRACT
Recent experiments on Bernal bilayer graphene (BLG) deposited on monolayer WSe_{2} revealed robust, ultraclean superconductivity coexisting with sizable induced spin-orbit coupling. Here, we propose BLG/WSe_{2} as a platform to engineer gate-defined planar topological Josephson junctions, where the normal and superconducting regions descend from a common material. More precisely, we show that if superconductivity in BLG/WSe_{2} is gapped and emerges from a parent state with intervalley coherence, then Majorana zero-energy modes can form in the barrier region upon applying weak in-plane magnetic fields. Our results spotlight a potential pathway for "internally engineered" topological superconductivity that minimizes detrimental disorder and orbital-magnetic-field effects.

Texto completo: 1 Coleções: 01-internacional Base de dados: MEDLINE Idioma: En Revista: Phys Rev Lett Ano de publicação: 2023 Tipo de documento: Article País de afiliação: China

Texto completo: 1 Coleções: 01-internacional Base de dados: MEDLINE Idioma: En Revista: Phys Rev Lett Ano de publicação: 2023 Tipo de documento: Article País de afiliação: China