论文标题
$ f(r)$ - 充电$ ads_ {4} $ - 标量理论中的热相变
Thermal phase transition in $F(R)$-charged $AdS_{4}$-scalar theory
论文作者
论文摘要
我们调查了$ f(r)$ - 充电$ ads_ {4} $黑洞的不稳定性通过线性扰动制度中的大量电荷标量字段。我们将速度不稳定性研究为$ f(r)$重力与平面层的近距离标量凝结,并研究了可能的相变的特性。结果表明,此类过渡对$ f(r)$的第一个衍生物相对于$ r $敏感,因为其值越大,临界温度越高,从而导致新一代的高温超导体。另外,对于一定范围的参数,$ f(r)$ - 充电$ ads_ {4} $黑洞遭受超级不稳定性的影响。我们考虑标量质量和电荷对这种不稳定性的影响,并得出结论,RN黑洞腐烂成小的毛茸茸的黑洞,这些黑色孔具有带电的标量冷凝物,漂浮在地平线附近。结果表明,以$ t <t_ {c} $出现了导致毛茸茸的黑洞解决方案的临界温度下的相变存在,而RN黑洞则存在于$ t> t_ {c} $。 $ f(r)$对临界温度的影响随后在超级不稳定的情况下进行了研究,这表明在$ f(r)$重力中可能会出现较高的临界温度。我们还检查了毛茸茸的黑洞的稳定性,并表明所产生的毛茸茸的解决方案可以被视为一个小带电的黑洞的超级不稳定性的终点。
We investigate instabilities of $F(R)$-charged $AdS_{4}$ black holes by a massive charged scalar field in a linear perturbation regime. We study tachyonic instabilities as the near horizon scalar condensation in a model of $F(R)$ gravity with planar horizon and investigate properties of possible phase transitions. The results show that such transitions are sensitive to the first derivative of $F(R)$ with respect to $R$ in that the larger its value, the higher the critical temperature, thus resulting in a new generation of high-temperature superconductors. Also, for a certain range of parameters, $F(R)$-charged $AdS_{4}$ black holes suffer from superradiant instability. We consider the effects of the scalar mass and charge on such instabilities and conclude that RN black holes decay into small hairy black holes that have a charged scalar condensate floating near the horizon. It is shown that the existence of phase transition at the critical temperature leading to a hairy black hole solution emerges for $T<T_{c}$, while RN black holes exist for $T>T_{c}$. The effect of $F(R)$ on the critical temperature is subsequently investigated in the case of superradiant instability, showing that higher critical temperatures would be possible in $F(R)$ gravity. We also check the stability of hairy black holes and show that the resulting hairy solution can be considered as a possible end point of superradiant instability of a small charged black hole.