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Bogoliubov-Fermi Surfaces in Noncentrosymmetric Multicomponent Superconductors

Julia M. Link, Igor F. Herbut

2020Physical Review Letters37 citationsDOIOpen Access PDF

Abstract

We show that when the time reversal symmetry is broken in a multicomponent superconducting condensate without inversion symmetry the resulting Bogoliubov quasiparticles generically exhibit mini-Bogoliubov-Fermi (BF) surfaces, for small superconducting order parameter. The absence of inversion symmetry makes the BF surfaces stable with respect to weak perturbations. With sufficient increase of the order parameter, however, the Bogoliubov-Fermi surface may disappear through a Lifshitz transition, and the spectrum this way become fully gapped. Our demonstration is based on the computation of the effective Hamiltonian for the bands near the normal Fermi surface by the integration over high-energy states. Exceptions to the rule, and experimental consequences are briefly discussed.

Topics & Concepts

SuperconductivityPhysicsQuasiparticleFermi surfaceHamiltonian (control theory)Condensed matter physicsFermi Gamma-ray Space TelescopePoint reflectionFermi gasSymmetry (geometry)Fermi energyQuantum mechanicsElectronMathematicsMathematical optimizationGeometryPhysics of Superconductivity and MagnetismTopological Materials and PhenomenaRare-earth and actinide compounds
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