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Superconducting quantum criticality in three-dimensional Luttinger semimetals

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arxiv 1603.00031 v2 pith:LRXGLLVG submitted 2016-02-29 cond-mat.str-el cond-mat.stat-mechcond-mat.supr-conhep-th

classification cond-mat.str-elcond-mat.stat-mechcond-mat.supr-conhep-th
keywords luttingerpointquantumcriticalcriticalityfeaturesfermionsscaling
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We study a simple model of three-dimensional fermions close to a quadratic band touching point, built from the celebrated Luttinger single-particle Hamiltonian and an attractive contact interaction between the particles. Such a system displays a novel quantum critical point between the semimetallic and an s-wave superconducting phase at which the low-energy "Luttinger fermions" are inextricably coupled to the order parameter fluctuations. The quantum critical point is perturbatively accessible near four spatial dimensions, where it features nontrivial scaling with dynamical exponent 1<z<2 and emergent rotational and particle-hole symmetries. Some features of the criticality, such as oscillatory corrections to scaling and its enhanced symmetry, are discussed.

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  1. Phase Diagram of Spin-3/2 Fermions in One Dimensional Optical Lattices

    cond-mat.quant-gas 2024-12 conditional novelty 4.0 of 10

    DMRG phase diagrams for a spin-3/2 fermionic Hubbard chain show quartet and density-wave order in the SU(4) limit and a spin-2 bosonic t-J regime under single-ion anisotropy.

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