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Non-Abelian braiding of Dirac fermionic modes using topological corner states in higher-order topological insulator

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arxiv 2001.00428 v1 pith:YAXLA2UT submitted 2020-01-02 cond-mat.mes-hall

Non-Abelian braiding of Dirac fermionic modes using topological corner states in higher-order topological insulator

classification cond-mat.mes-hall
keywords braidingfermionicmodestopologicaldiracnon-abeliancornerstates
verification ladder T0 review T1 audit T2 compute T3 formal T4 reserved
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We numerically demonstrate that the topological corner states residing in the corners of higher-order topological insulator possess non-Abelian braiding properties. Such topological corner states are Dirac fermionic modes other than Majorana zero-modes. We claim that Dirac fermionic modes protected by nontrivial topology also support non-Abelian braiding. An analytical description on such non-Abelian braiding is conducted based on the vortex-induced Dirac-type fermionic modes. The braiding operator for Dirac fermionic modes is also analytically derivated and compared with the Majorana zero-modes. Experimentally, such non-Abelian braiding operation on Dirac fermionic modes is proposed to be testified through topological electric circuit.

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