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Inhomogeneous Superconductivity in Condensed Matter and QCD

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arxiv hep-ph/0305069 v1 pith:MIWEBMOS submitted 2003-05-07 hep-ph cond-matnucl-th

classification hep-phcond-matnucl-th
keywords stateinhomogeneousfermiloffpairingsituationspacesuperconductivity
verification ladder T0 review T1 audit T2 compute T3 formal
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Inhomogeneous superconductivity arises when the species participating in the pairing phenomenon have different Fermi surfaces with a large enough separation. In these conditions it could be more favorable for each of the pairing fermions to stay close to its Fermi surface and, differently from the usual BCS state, for the Cooper pair to have a non zero total momentum. For this reason in this state the gap varies in space, the ground state is inhomogeneous and a crystalline structure might be formed. This situation was considered for the first time by Fulde, Ferrell, Larkin and Ovchinnikov, and the corresponding state is called LOFF. The spontaneous breaking of the space symmetries in the vacuum state is a characteristic feature of this phase and is associated to the presence of long wave-length excitations of zero mass. The situation described here is of interest both in solid state and in elementary particle physics, in particular in Quantum Chromo-Dynamics at high density and small temperature. In this review we present the theoretical approach to the LOFF state and its phenomenological applications using the language of the effective field theories.

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Cited by 3 Pith papers

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  1. Classification of color superconductivity by one-gluon exchange helicity amplitudes and renormalization group equations

    hep-ph 2025-08 conditional novelty 6.0 of 10

    In dense QCD, the most attractive quark pairing channel is classified by helicity amplitudes and renormalization group equations, with a new p-wave (1P1) channel favored for symmetric flavor and attraction found in th...

  2. Dislocations and crystallization dynamics of chiral soliton lattices

    hep-th 2025-06 conditional novelty 6.0 of 10

    A modified axion model with a B-dependent topological coupling shows numerically that chiral soliton lattices form dynamically through transient edge and screw dislocations, including a stable DNA-like double helix.

  3. Interplay between inhomogeneous chiral and crystalline color-superconducting phases in the two-flavor NJL model

    hep-ph 2026-06 unverdicted novelty 4.0 of 10

    In the two-flavor NJL model the wave vectors of the inhomogeneous chiral condensate and the single-plane-wave LOFF diquark condensate are never simultaneously nonzero, so the phases do not coexist.

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