Functional renormalization group study of parallel double quantum dots: Effects of asymmetric dot-lead couplings

V. S. Protsenko and A. A. Katanin
Phys. Rev. B 95, 245129 – Published 22 June 2017

Abstract

We explore the effects of asymmetry of hopping parameters between double parallel quantum dots and the leads on the conductance and a possibility of local magnetic moment formation in this system using functional renormalization group approach with the counterterm. We demonstrate a possibility of a quantum phase transition to a local moment regime [so-called singular Fermi liquid (SFL) state] for various types of hopping asymmetries and discuss respective gate voltage dependencies of the conductance. We show that, depending on the type of the asymmetry, the system can demonstrate either a first-order quantum phase transition to an SFL state, accompanied by a discontinuous change of the conductance, similarly to the symmetric case, or the second-order quantum phase transition, in which the conductance is continuous and exhibits Fano-type asymmetric resonance near the transition point. A semianalytical explanation of these different types of conductance behavior is presented.

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  • Received 17 March 2017
  • Revised 17 May 2017

DOI:https://doi.org/10.1103/PhysRevB.95.245129

©2017 American Physical Society

Physics Subject Headings (PhySH)

Condensed Matter, Materials & Applied Physics

Authors & Affiliations

V. S. Protsenko and A. A. Katanin

  • M. N. Mikheev Institute of Metal Physics, 620990 Ekaterinburg Russia and Ural Federal University, 620002 Ekaterinburg, Russia

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Issue

Vol. 95, Iss. 24 — 15 June 2017

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