Entanglement entropy in holographic p-wave superconductor/insulator model

被引:0
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作者
Rong-Gen Cai
Li Li
Li-Fang Li
Ru-Keng Su
机构
[1] Chinese Academy of Sciences,State Key Laboratory of Theoretical Physics, Institute of Theoretical Physics
[2] Center for Space Science and Applied Research,State Key Laboratory of Space Weather
[3] Chinese Academy of Sciences,Department of Physics
[4] Fudan University,undefined
关键词
Confinement; Gauge-gravity correspondence; Holography and condensed matter physics (AdS/CMT);
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摘要
We continue our study of entanglement entropy in the holographic superconducting phase transitions. In this paper we consider the holographic p-wave superconductor/insulator model, where as the back reaction increases, the transition is changed from second order to first order. We find that unlike the s-wave case, there is no additional first order transition in the superconducting phase. We calculate the entanglement entropy for two strip geometries. One is parallel to the super current, and the other is orthogonal to the super current. In both cases, we find that the entanglement entropy monotonically increases with respect to the chemical potential.
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