Holographic entanglement entropy of a 1 + 1 dimensional p-wave superconductor

被引:0
作者
Sumit R. Das
Mitsutoshi Fujita
Bom Soo Kim
机构
[1] University of Kentucky,Department of Physics and Astronomy
来源
Journal of High Energy Physics | / 2017卷
关键词
Black Holes; Field Theories in Lower Dimensions; Gauge-gravity correspondence; Holography and condensed matter physics (AdS/CMT);
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摘要
We examine the behavior of entanglement entropy SAEE of a subsystem A in a fully backreacted holographic model of a 1 + 1 dimensional p wave superconductor across the phase transition. For a given temperature, the system goes to a superconducting phase beyond a critical value of the charge density. The entanglement entropy, considered as a function of the charge density at a given temperature, has a cusp at the critical point. In addition, we find that there are three different behaviors in the condensed phase, depending on the subsystem size. For a subsystem size l smaller than a critical size lc1, SAEE continues to increase as a function of the charge density as we cross the phase transition. When l lies between lc1 and another critical size lc2 the entanglement entropy displays a non-monotonic behavior, while for l > lc2 it decreases monotonically. At large charge densities SAEE appears to saturate. The non-monotonic behavior leads to a novel phase diagram for this system.
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