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Tricritical point and solid/liquid/gas phase transition of higher dimensional AdS black hole in massive gravity

机译:特异性点和固体/液体/气相转变高尺寸广告的黑洞在大规模重力

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摘要

By considering the fifth order graviton term in massive gravity theory, we study the P-V critical behaviors of AdS black hole in d >= 7 dimensional space-time, and find the solid/liquid/gas phase transition with the "common" tricritical point, which does not exist in absence of higher graviton terms. Moreover, we also find the number of positive real roots of critical radius equation plays a key role in classifying different kinds of phase transitions. If there is only one positive root of equation, the first order Van der Waals-like phase transition emerges. For two roots, the system could experience a zero-order reentrant phase transition. Notably, for three roots, the solid/liquid/gas phase transition can occur. In addition, because the critical radius equation is a (n-2)-order polynomial equation associated with the graviton terms, the critical phenomena of black holes in extended phase space depend crucially on the number n of the graviton terms in high dimensional massive gravity. (C) 2019 Elsevier Inc. All rights reserved.
机译:通过考虑大规模重力理论的第五阶Grabiton术语,我们研究了D> = 7尺寸时空的ADS黑洞的PV临界行为,并找到了具有“常见”三维基点的固体/液/气相过渡,在没有更高的格子术语的情况下不存在。此外,我们还发现临界半径方程的正真源的数量在分类不同类型的阶段转换中起着关键作用。如果只有一个方程的积极根,则首次订购van der WALS样阶段转换出现。对于两个根,系统可以体验到零阶的重入阶段转换。值得注意的是,对于三根根,可以发生固体/液体/气相转变。另外,由于临界半径方程是与格格格尼相关的(n-2)的多项式方程,所以延伸相空间中的黑孔的临界现象在高维大规模重力中大致依赖于格格格顿术语的数量n。 。 (c)2019 Elsevier Inc.保留所有权利。

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