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Self-energy of Strongly Interacting Fermions in Medium: a Holographic Approach

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arxiv 1205.3377 v3 pith:VH4GUDEX submitted 2012-05-15 hep-th hep-ph

classification hep-thhep-ph
keywords plasminomediumphasethermaldensityfermionsinteractingmass
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abstract

We consider the self-energy of strongly interacting fermions in the medium using gauge/gravity duality of $D4/D8$ system. We study the mass generation of the thermal and/or dense medium and the collective excitation called plasmino, by considering the spectral function of fermion and its dispersion relation. Our results are very different from those of the hard thermal loop method: for zero density, there is no thermal mass or plasmino in any phase. Plasmino in deconfined phase is not allowed in $D4/D8$ set up. In the confined phase, there is plasmino modes only for a window of density.

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Cited by 2 Pith papers

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    In the Gribov-Zwanziger framework, the thermal quark spectral function obeys new sum rules and exhibits a coupling-driven transition from three poles to a single pole, with the thermal mass vanishing at a critical cou...

  2. Holographic correlation functions of fermions in anisotropic plasma

    hep-th 2026-06 unverdicted novelty 4.0 of 10

    Generalizes the holographic prescription for fermionic retarded Green's functions to anisotropic geometries and numerically evaluates direction-dependent features, instabilities, Landau levels, and a pseudogap in thre...

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