论文标题
全息P+IP解决方案未能赢得DRGT的竞争
The holographic p+ip solution failed to win the competition in dRGT massive gravity
论文作者
论文摘要
在本文中,在探针极限之外,研究了带有带电复合载体场的全息P波超流体模型。在大规范合奏中比较了P波和P+IP解决方案的稳定性。与P+IP解决方案相比,P-WAVE解决方案始终具有较低的巨大潜力值,这表明,即使考虑到大量的重力理论,全息系统仍然有利于各向异性(P-WAVE)解决方案。在散装的DRGT大量重力的全息超导体模型中,发现通过固定参考度量参数$ C_0 $来违反键帆对称性。因此,为了获得冷凝水和巨大潜力对温度的依赖,应在数值工作中考虑地平线半径的不同值。通过特殊的模型参数选择,我们进一步研究了临界后反应强度对Graviton质量参数的依赖性,除此之外,超氟相位过渡成为一阶。我们还给出了临界温度对背部反应强度$ b $和GRAITON质量参数$ m^2 $的依赖性。
In this paper, the holographic p-wave superfluid model with charged complex vector field is studied in dRGT massive gravity beyond the probe limit. The stability of p-wave and p+ip solutions are compared in the grand canonical ensemble. The p-wave solution always get lower value of grand potential than the p+ip solution, showing that the holographic system still favors an anisotropic (p-wave) solution even with considering a massive gravity theory in bulk. In the holographic superconductor models with dRGT massive gravity in bulk, a key sailing symmetry is found to be violated by fixing the reference metric parameter $c_0$. Therefore, in order to get the dependence of condensate and grand potential on temperature, different values of horizon radius should be considered in numerical work. With a special choice of model parameters, we further study the dependence of critical back-reaction strength on the graviton mass parameter, beyond which the superfluid phase transition become first order. We also give the dependence of critical temperature on the back reaction strength $b$ and graviton mass parameter $m^2$.