English

Two-channel Kondo problem in coupled interacting helical liquids

Strongly Correlated Electrons 2024-05-07 v2 Mesoscale and Nanoscale Physics

Abstract

We study the two-channel Kondo problem in the context of two interacting helical liquids coupled to a spin-12\frac12 magnetic impurity. We show that the interactions between the two helical liquids significantly affect the phase diagram and other observable properties. Using a multichannel Luttinger liquid formalism, we analyze both the Toulouse limit, where an exact solution is available, and the weak coupling limit, which can be studied via a perturbative renormalization group (RG) approach. We recover the results for the `decoupled' limit (interactions between the helical liquids switched off) and point out deviations from the known results due to this coupling. The model under study is mapped to a model of two effectively decoupled helical liquids coupled to an impurity. The perturbative RG study shows that each of these channels can flow to either a Ferromagnetic (FM) or an Anti-Ferromagnetic (AFM) fixed point. We obtain the phase diagram of the coupled system as a function of the system parameters. The observable consequences of the interaction between the two channels are captured using linear response theory. We compute the negative correction to the conductance due to the Kondo scattering processes and show how it scales with the temperature as a function of inter-channel interaction.

Keywords

Cite

@article{arxiv.2304.04388,
  title  = {Two-channel Kondo problem in coupled interacting helical liquids},
  author = {Sourav Biswas and Alessandro De Martino and Sumathi Rao and Arijit Kundu},
  journal= {arXiv preprint arXiv:2304.04388},
  year   = {2024}
}

Comments

15 pages. Comments welcome

R2 v1 2026-06-28T09:56:44.355Z