Enhanced lifetimes of spin chains coupled to chiral edge states
arXiv:1811.03973 · doi:10.1088/1367-2630/ab116b
Abstract
We consider spin relaxation of finite-size spin chains exchanged coupled with a one dimensional (1D) electron gas at the edge of a Quantum Spin Hall (QSH) insulator. Spin lifetimes can be enhanced due to two independent mechanisms. First, the suppression of spin-flip forward scattering inherent in the spin momentum locking of the QSH edges. Second, the reduction of spin-flip backward scattering due to destructive interference of the quasiparticle exchange, modulated by , where is the inter-spin distance and is the Fermi wavenumber of the electron gas. We show that the spin lifetime of the ground state of odd-numbered chains of antiferromagnetically (AFM) coupled spins can be increased more than 4 orders of magnitude by properly tuning the product and the spin size , in strong contrast with the 1D case. Possible physical realizations together with some potential issues are also discussed.
11 pages, 3 figures
References in corpus (23)
- Quantum Spin Hall Effect and Topological Phase Transition in HgTe Quantum Wells
- Quantum Spin Hall Insulator State in HgTe Quantum Wells
- Realization of Quantum Spin Hall State in Monolayer 1T'-WTe2
- Higher-Order Topology in Bismuth
- Observation of the Quantum Spin Hall Effect up to 100 Kelvin in a Monolayer Crystal
- Edge conduction in monolayer WTe2
- Reading and Writing Single-Atom Magnets
- One-dimensional Topological Edge States of Bismuth Bilayers
- Surface State Magnetization and Chiral Edge States on Topological Insulators
- Kondo effect in the helical edge liquid of the quantum spin Hall state
- Spin Excitations and Correlations in Scanning Tunneling Spectroscopy
- Conductance of a helical edge liquid coupled to a magnetic impurity
- Protection of excited spin states by a superconducting energy gap
- Engineering the eigenstates of coupled spin-1/2 atoms on a surface
- Edge and Interfacial States in a 2D Topological Insulator:Bi(111) Bilayer on BiTeSe
- Spin decoherence of magnetic atoms on surfaces
- Tuning Edge States in Strained-Layer InAs/GaInSb Quantum Spin Hall Insulators
- Probing Magnetic Excitations and Correlations in Single and Coupled Spin Systems with Scanning Tunneling Spectroscopy
- Helical edge states coupled to a spin bath: Current-induced magnetization
- Symmetry effects on spin switching of adatoms
- Long spin relaxation times in a transition metal atom in direct contact to a metal substrate
- Noiseless manipulation of helical edge state transport by a quantum magnet
- General scheme for stable single and multiatom nanomagnets according to symmetry selection rules