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Analytical Study of the Holographic Superconductor from Higher Derivative Theory

机译:高衍生理论的全息超导体的分析研究

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In this paper, we analytically study the holographic superconductor models with the high derivative (HD) coupling terms. Using the Sturm-Liouville (S-L) eigenvalue method, we perturbatively calculate the critical temperature. The analytical results are in good agreement with the numerical results. It confirms that the perturbative method in terms of the HD coupling parameters is available. Along the same line, we analytically calculate the value of the condensation near the critical temperature. We find that the phase transition is second order with mean field behavior, which is independent of the HD coupling parameters. Then, in the low-temperature limit, we also calculate the conductivity, which is qualitatively consistent with the numerical one. We find that the superconducting energy gap is proportional to the value of the condensation. But we note that since the condensation changes with the HD coupling parameters, as the function of the HD coupling parameters, the superconducting energy gap follows the same change trend as that of the condensation.
机译:在本文中,我们用高衍生物(HD)耦合术语分析了全息超导模型。使用STURM-LIOUVILLE(S-L)特征值方法,我们扰乱了临界温度。分析结果与数值结果吻合良好。它证实,在HD耦合参数方面可以获得扰动方法。沿同一条线,我们分析了临界温度附近的冷凝的值。我们发现相位转换是具有平均场行为的二阶,其与HD耦合参数无关。然后,在低温极限中,我们还计算导电性,这与数值一个定性一致。我们发现超导能隙与冷凝的值成比例。但是,我们注意到,由于冷凝与高清耦合参数的变化,作为HD耦合参数的功能,超导能量间隙遵循与冷凝的相同的变化趋势。

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