Static and rotating white dwarf stars at finite temperatures

IF 0.2 Q4 MATHEMATICS
K. Boshkayev, O. Luongo, M. Muccino, H. Quevedo
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引用次数: 0

Abstract

. Static and rotating, cold and hot white dwarf stars are investigated both in Newtonian gravity and general theory of relativity, employing the well-established Chandrasekhar equation of state. The Hartle formalism is involved to construct and study uniformly rotating configurations of white dwarfs. The mass-radius, mass-central density, radius-central density and other basic relations of stable white dwarfs, consisting of pure helium and iron, are constructed for different temperatures at mass shedding limit. Stability of white dwarfs is analyzed with respect to the inverse beta decay process, pycnonuclear reactions and instabilities of general relativity. It is found that for a fixed mass hot white dwarfs consisting of pure iron are smaller in size, correspondingly denser with respect to the ones composed of light elements. In addition, it is shown that near the Chandrasekhar mass limit the mass of hot rotating white dwarfs is slightly less than for cold ones, though for low mass rotating white dwarfs and static ones in all mass range the situation is opposite.
静止和旋转的白矮星在有限的温度下
。利用公认的钱德拉塞卡状态方程,在牛顿引力和广义相对论中研究了静态和旋转、冷和热白矮星。哈特尔形式论被用于构造和研究白矮星的均匀旋转构型。建立了纯氦和纯铁组成的稳定白矮星在质量脱落极限下不同温度下的质量半径、质量中心密度、半径中心密度等基本关系。从逆衰变过程、核原子反应和广义相对论的不稳定性等方面分析了白矮星的稳定性。我们发现,对于质量固定的纯铁组成的热白矮星,其体积较小,相对于由轻元素组成的白矮星密度更大。此外,在钱德拉塞卡质量极限附近,热旋转白矮星的质量略小于冷旋转白矮星的质量,而在所有质量范围内的低质量旋转白矮星和静止白矮星的情况则相反。
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来源期刊
CiteScore
0.30
自引率
0.00%
发文量
11
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