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Determination of Velocity and Radius of Supernova Remnant after 1000 yrs of Explosion

机译:爆炸1000年后超新星残余的速度和半径的测定

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Supernova explosions are described as very violent events which transfer a significant amount of energy to interstellar media and are responsible for a large variety of physical processes. This study does not discuss the actual explosion mechanisms but follows the behavior of the dynamical evolution of some selected type I and type II supernova remnant and particularly after a thousand years from their explosion and shows how the density of the medium affects the evolution and the lifetime of each remnant. By studying such behaviors, a simplified model has been proposed here for the velocity and radius of the remnant after thousand years of explosion that depends only on the density of the medium and age of the remnant. It has been found that all types of supernova remnants have similar behaviors after a thousand years from their explosion despite their origin formation. Moreover, it is demonstrated that, when those selected remnants have entered or will enter into their radiative phase, an idea on their physical properties will be obtained.
机译:超新星爆炸被描述为非常猛烈的事件,将大量能量转移到星际介质,并导致各种各样的物理过程。这项研究没有讨论实际的爆炸机制,而是遵循某些选定的I型和II型超新星残余物的动力学演化行为,尤其是爆炸一千年后的动力学演化行为,并显示了介质的密度如何影响其演化和寿命每个残余。通过研究这种行为,这里提出了一个简化的模型,用于爆炸一千年后的残留物的速度和半径,该模型仅取决于残留物的密度和年龄。已经发现,所有类型的超新星残余物在爆炸一千年后,尽管其起源都具有相似的行为。而且,证明了,当那些选择的残余物已经进入或将进入其辐射阶段时,将获得关于其物理性质的想法。

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