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Holographic Superconductors with Power-Maxwell field

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arxiv 1106.5181 v3 pith:FNH6HGC7 submitted 2011-06-26 hep-th gr-qc

classification hep-thgr-qc
keywords fieldpower-maxwellscalardifferentfindholographicsuperconductorstakes
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abstract

With the Sturm-Liouville analytical and numerical methods, we investigate the behaviors of the holographic superconductors by introducing a complex charged scalar field coupled with a Power-Maxwell field in the background of $d$-dimensional Schwarzschild AdS black hole. We note that the Power-Maxwell field takes the special asymptotical solution near boundary which is different from all known cases. We find that the larger power parameter $q$ for the Power-Maxwell field makes it harder for the scalar hair to be condensated. We also find that, for different $q$, the critical exponent of the system is still 1/2, which seems to be an universal property for various nonlinear electrodynamics if the scalar field takes the form of this paper.

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Cited by 1 Pith paper

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  1. Analytical and Numerical Study of Quartic Nonlinear Electrodynamics in Holographic Fermion Systems

    hep-th 2026-07 conditional novelty 6.0 of 10

    An F^4-deformed bulk gauge field raises the chemical potential, lowers T/μ, shifts the Fermi momentum upward, and sharpens the holographic spectral peak without destroying the Fermi surface.

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