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Competition and Coexistence of Order Parameters in Holographic Multi-Band Superconductors

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arxiv 1307.2768 v2 pith:KKLWQVBP submitted 2013-07-10 hep-th

classification hep-th
keywords orderphasesfiveparametersscalarsuperconductingbackbulk
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We construct a holographic multi-band superconductor model with each complex scalar field in the bulk minimally coupled to a same gauge field. Taking into account the back reaction of matter fields on the background geometry and focusing on the two band case with two scalar order parameters, we find that depending on the strength of the back reaction and the charge ratio of the two bulk scalars, five different superconducting phases exist, and three of five phases exhibit some region where both orders coexist and are thermodynamically favored. The other two superconducting phases have only one scalar order. The model exhibits rich phase structure and we construct the full diagram for the five superconducting phases. Our analysis indicates that the equivalent attractive interaction mediated by gravity between the two order parameters tends to make the coexistence of two orders much more easy rather than more difficult.

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Cited by 2 Pith papers

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    Holographic simulations show that composite vortices in miscible binary superfluids split into singly quantized vortices with temperature-dependent instabilities and no persistent extra vortices.

  2. Holographic s+p superconductors with nonlinear electrodynamics

    hep-th 2026-06 unverdicted novelty 5.0 of 10

    Numerical holographic study finds nonlinear electrodynamics suppresses s and p condensates differently, induces spontaneous charge accumulation outside the horizon, and modifies optical conductivity with a minimum in ...

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