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首页> 外文期刊>The Astrophysical journal >A NUMERICAL GAMMA-RAY BURST SIMULATION USING THREE-DIMENSIONAL RELATIVISTIC HYDRODYNAMICS: THE TRANSITION FROM SPHERICAL TO JETLIKE EXPANSION
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A NUMERICAL GAMMA-RAY BURST SIMULATION USING THREE-DIMENSIONAL RELATIVISTIC HYDRODYNAMICS: THE TRANSITION FROM SPHERICAL TO JETLIKE EXPANSION

机译:三维相对论水动力动力学的数值伽马射线爆裂模拟:从球面到Jetlike扩张的过渡

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We present the first unrestricted, three-dimensional relativistic hydrodynamical calculations of the blob of gas associated with the jet that produces a gamma-ray burst. We investigate the deceleration phase of the blob, which corresponds to the time when afterglow radiation is produced, concentrating on the transition in which the relativistic beaming γ~(-1) goes from being less than θ, where γ is the bulk Lorentz factor and θ is the angular width of the jet, to γ~(-1) being greater than ?. We study the time-dependent evolution of the physical parameters associated with the jet, both parallel to the direction of motion and perpendicular to it. We calculate light curves for observers at varying angles with respect to the velocity vector of the blob, assuming optically thin emission that scales with the local pressure. Our main findings are that (V) gas ahead of the advancing blob does not accrete onto and merge with the blob material but rather flows around the blob, (2) the decay light curve steepens at a time corresponding roughly to γ~(-1)≈θ (in accord with earlier studies), and (3) the rate of decrease of the forward component of momentum in the blob is well fitted by a simple model in which the gas in front of the blob exerts a drag force on the blob and the cross-sectional area of the blob increases quadratically with laboratory time (or distance).
机译:我们提出了与产生伽马射线爆发的射流相关的气体团的第一个无限制的三维相对论流体力学计算。我们研究斑点的减速阶段,该阶段对应于产生余辉辐射的时间,重点是相对论光束γ〜(-1)从小于θ过渡的过渡,其中γ是整体洛伦兹因子,而θ是射流的角宽度,到γ〜(-1)大于。我们研究了与射流相关的物理参数随时间的变化,该参数既平行于运动方向又垂直于运动方向。假设光学稀薄的发射与局部压力成比例,我们将以相对于斑点速度矢量不同角度的角度为观察者计算光曲线。我们的主要发现是,前进的波峰之前的(V)气体不会积聚到波峰材料上并与之融合,而是在波峰周围流动;(2)衰减光曲线在大约对应于γ〜(-1)的时间变陡)≈θ(与先前的研究一致),(3)通过简单的模型很好地拟合了斑点中动量的正向分量的降低速率,其中,斑点前的气体在管道上施加了阻力斑点和斑点的横截面积随实验室时间(或距离)呈二次方增加。

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