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首页> 外文期刊>The Astrophysical journal >RADIATION FROM STELLAR COLLAPSE TO A BLACK HOLE
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RADIATION FROM STELLAR COLLAPSE TO A BLACK HOLE

机译:辐射从塌陷到黑洞

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Calculating the radiation from stellar collapse to a black hole requires a relativistic treatment of the gravitational field, hydrodynamical flow, and radiative transport. We adopt a model for a collapsing star in general relativity that is sufficiently simple that we can focus on the radiative transport and treat it essentially without approximation. The matter and gravitational field are described by the Oppenheimer-Snyder solution for the collapse of a spherical, homogeneous dust ball. Transport is calculated numerically by solving the radiation moment equations in conjunction with the complete angle-dependent Boltzmann equation for the intensity. The intensity can describe photons, neutrinos, or any other form of radiation. Thermal emission and absorption as well as coherent isotropic scattering sources are included. All opacities are chosen to be constant and gray. We present analytic solutions to our transport equations in both optically thick and transparent regimes and compare them to our numerical results. We also use our model to evaluate simplifications like the diffusion approximation in a relativistic setting. Our simple treatment can be used to explore a wide variety of stellar parameters and to test more sophisticated relativistic collapse codes containing radiation transport. For any given choice of parameters, our model can determine the comoving radiation field in a collapsing star in a few minutes on a typical workstation.
机译:计算从恒星塌陷到黑洞的辐射,需要对引力场,流体动力流和辐射传输进行相对论处理。我们采用广义相对论中一颗坍缩恒星的模型,该模型非常简单,因此我们可以专注于辐射传输,并且基本上无需近似即可对其进行处理。 Oppenheimer-Snyder解决方案描述了球形均质尘球塌陷的物质和重力场。通过求解辐射矩方程以及与强度相关的完整的角度依赖的玻尔兹曼方程,可以计算出传输量。强度可以描述光子,中微子或任何其他形式的辐射。包括热发射和吸收以及相干的各向同性散射源。选择所有不透明度为恒定和灰色。我们提供了光学厚度和透明状态下的输运方程的解析解,并将它们与我们的数值结果进行了比较。我们还使用我们的模型来评估简化性,例如相对论环境中的扩散近似。我们的简单处理方法可用于探索各种恒星参数,并测试包含辐射传输的更复杂的相对论崩溃代码。对于任何给定的参数选择,我们的模型都可以在典型的工作站上在几分钟内确定坍缩恒星中的共同运动辐射场。

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