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arXiv:1311.2699·v4·High Energy Physics — Theory

Lifshitz Scaling Effects on Holographic Superconductors

Jun-Wang Lu · Ya-Bo Wu · Peng Qian · Yue-Yue Zhao · Xue Zhang · Nan Zhang

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Abstract

Via numerical and analytical methods, the effects of the Lifshitz dynamical exponent on holographic superconductors are studied in some detail, including wave and wave models. Working in the probe limit, we find that the behaviors of holographic models indeed depend on concrete value of . We obtain the condensation and conductivity in both Lifshitz black hole and soliton backgrounds with general . For both wave and wave models in the black hole backgrounds, as increases, the phase transition becomes more difficult and the growth of conductivity is suppressed. For the Lifshitz soliton backgrounds, when increases (), the critical chemical potential decreases in the wave cases but increases in the wave cases. For wave models in both Lifshitz black hole and soliton backgrounds, the anisotropy between the AC conductivity in different spatial directions is suppressed when increases. The analytical results uphold the numerical results.

Comments: Typos corrected; Footnote added; References added; To be published in Nuclear Physics B

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