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An Anderson impurity interacting with the helical edge states in a quantum spin Hall insulator

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arxiv 2201.05308 v1 pith:FO6DUKPH submitted 2022-01-14 cond-mat.str-el

An Anderson impurity interacting with the helical edge states in a quantum spin Hall insulator

classification cond-mat.str-el
keywords spinlocalnaturaledgeimpuritystatesactivehall
verification ladder T0 review T1 audit T2 compute T3 formal T4 reserved
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Using the natural orbitals renormalization group (NORG) method, we have investigated the screening of the local spin of an Anderson impurity interacting with the helical edge states in a quantum spin Hall insulator. We find that there is a local spin formed at the impurity site and the local spin is completely screened by electrons in the quantum spin Hall insulator. Meanwhile, the local spin is screened dominantly by a single active natural orbital. We then show that the Kondo screening mechanism becomes transparent and simple in the framework of natural orbitals formalism. We project the active natural orbital respectively into real space and momentum space to characterize its structure. And we confirm the spin-momentum locking property of the edge states based on the occupancy of a Bloch state in the edge to which the impurity couples. Furthermore, we study the dynamical property of the active natural orbital represented by the local density of states, from which we observe the Kondo resonance peak.

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