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首页> 外文期刊>International journal of modern physics, D. Gravitation, astrophysics, cosmology >Information-entropic method for studying the stability bound of nonrelativistic polytropic stars within modified gravity theories
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Information-entropic method for studying the stability bound of nonrelativistic polytropic stars within modified gravity theories

机译:研究改进的重力理论内非椭圆体稳定性稳定性的熵方法

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We study the stability of nonrelativistic polytropic stars within two modified gravity theories, i.e. beyond Horndeski gravity and Eddington-inspired Born-Infeld theories, using the configuration entropy method. We use the spatially localized bounded function of energy density as solutions from stellar effective equations to construct the corresponding configuration entropy. We use the same argument as the one used by Gleiser and coworkers [M. Gleiser and D. Sowinski, Phys. Lett. B 727 (2013) 272; M. Gleiser and N. Jiang, Phys. Rev. D 92 (2015) 044046] that the stars are stable if there is a peak in configuration entropy as a function of adiabatic index curve. Specifically, the boundary between stable and unstable regions which corresponds to Chandrasekhar stability bound is indicated from the existence of the maximum peak while the most stable polytropic stars are indicated by the minimum peak in the corresponding curve. We have found that the values of critical adiabatic indexes of Chandrasekhar stability bound and the most stable polytropic stars predicted by the nonrelativistic limits of beyond Horndeski gravity and Eddington-inspired Born-Infeld theories are different to those predicted by general relativity where the corresponding differences depend on the free parameters of both theories.
机译:我们研究了两个改进的重力理论内的非椭圆体的稳定性,即使用配置熵方法超越Horndeski Gravity和Eddington-Insport-Infeld理论。我们使用能量密度的空间局部界限函数作为恒星有效方程的解决方案来构造相应的配置熵。我们使用与Gleiser和Coworkers使用的相同的参数[M. Gleiser和D. Sowinski,Phys。吧。 B 727(2013)272; M. Gleiser和N.江,物理。 Rev.D 92(2015)044046]如果由于配置熵在绝热指数曲线的函数中,恒星是稳定的。具体地,从最大峰值的存在,表示稳定和不稳定区域之间的边界,其对应于Chandrasekhar稳定性结合的存在,而最稳定的多细胞恒星被相应曲线中的最小峰值表示。我们发现Chandrasekhar稳定性束缚的关键绝热指数的值和最稳定地预测的Horndeski Gravity和Eddington-Inspired-Infeld理论预测的最稳定的多细胞恒星与通过相应差异所预测的通用相对性预测的那些不同在两个理论的自由参数上。

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