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首页> 外文期刊>International journal of modern physics, D. Gravitation, astrophysics, cosmology >Relativistic solution for a class of static compact charged star in pseudo-spheroidal spacetime
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Relativistic solution for a class of static compact charged star in pseudo-spheroidal spacetime

机译:拟球面时空中一类静态紧致带电星的相对论解

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Considering VaidyaTikekar metric, we obtain a class of solutions of the EinsteinMaxwell equations for a charged static fluid sphere. The physical 3-space (t = const.) here is described by pseudo-spheroidal geometry. The relativistic solution for the theory is used to obtain models for charged compact objects; thereafter, a qualitative analysis of the physical aspects of compact objects are studied. The dependence of some of the properties of a superdense star on the parameters of the three geometry is explored. We note that the spheroidicity parameter a plays an important role for determining the properties of a compact object. A nonlinear equation of state (EOS) is required to describe a charged compact object with pseudo-spheroidal geometry, which we have shown for known masses of compact objects. We also note that the size of a static compact charged star is more than that of a static compact star without charge.
机译:考虑VaidyaTikekar度量,我们获得了带电静态流体球的EinsteinMaxwell方程的一类解。此处的物理3空间(t =常数)由伪球形几何描述。该理论的相对论解被用于获得带电紧凑物体的模型。此后,对紧凑物体的物理方面进行了定性分析。探索了稠密恒星某些性质对这三个几何参数的依赖性。我们注意到,球形度参数a在确定紧凑对象的属性方面起着重要作用。需要非线性状态方程(EOS)来描述带伪球形几何体的带电紧致物体,对于已知的紧致物体质量,我们已经示出了该状态。我们还注意到,静压恒星的大小要大于不带静压恒星的大小。

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