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Influence of irradiation on the space-time structure of shock waves

机译:辐照对冲击波时空结构的影响

摘要

The long-range energy deposition by heavy-ion beams makes new types of shock wave experiments possible in the laboratory. We have investigated a situation that is of relevance to supernova dynamics in astrophysics, where a shock wave is irradiated by a flux of neutrinos depositing energy throughout the shock wave and surrounding matter, thus changing the behaviour of the running shock. We have carried out fluid-dynamical simulations to study generic features of stimulated shock waves. First we consider an idealized case assuming uniform energy deposition into a planar shock wave propagating through an ideal gas. Then we investigate more realistic situations realizable in laboratory experiments with heavy-ion beams. We have found that energy deposition leads to two important effects: acceleration of the shock front and decay of the shock strength. The possibility of laboratory experiments is briefly discussed.
机译:重离子束的长距离能量沉积使在实验室中进行新型冲击波实验成为可能。我们研究了一种与天体物理学中超新星动力学有关的情况,在这种情况下,中微子通量辐射了冲击波,在整个冲击波和周围物质中沉积了能量,从而改变了运行中的冲击的行为。我们已经进行了流体动力学模拟,以研究受激冲击波的一般特征。首先,我们考虑一个理想情况,假设均匀的能量沉积在通过理想气体传播的平面冲击波中。然后,我们研究在重离子束实验室实验中可实现的更现实的情况。我们已经发现,能量沉积会导致两个重要的影响:冲击前沿的加速和冲击强度的衰减。简要讨论了实验室实验的可能性。

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