论文标题
通过CAS的团块中的灰尘存活率会引起反向冲击-II。磁场的影响
Dust survival rates in clumps passing through the Cas A reverse shock -- II. The impact of magnetic fields
论文作者
论文摘要
在核心偏离超新星的块状喷射中形成尘土颗粒,它们会受到反向冲击的影响,这能够破坏团块并破坏谷物。重要的尘埃破坏过程包括热和动力学溅射以及碎片化和谷物蒸发。在本研究中,我们关注磁场对破坏过程的影响。我们已经使用Astrobear进行了磁性流动力学模拟,以建模与弹出块相互作用的冲击波。尘埃运输和破坏分数是使用我们的后加工代码纸船计算的,在该纸船中,由于磁场而引起的晶粒加速度和允许部分晶粒蒸发的过程已被新实施。对于富含氧气的超新星残留圆锥体A,与非磁性情况相比,当磁场垂直于冲击方向时,我们发现尘埃存活率明显降低。对于平行场对准,破坏也得到了增强,但在较低的层面上。存活部分敏感地取决于团块和环境介质之间的气体密度对比以及晶粒尺寸。对于$ 100 $的低密度对比度,例如$ 5 \,$ nm硅酸盐谷物被完全破坏,而生存分数为$ 1 \,μ$ m谷物为$ 86 \,$ $ $。对于$ 1000 $,$ 95 \的高密度对比度,$ 5 \ $ nm谷物的$ nm $ 1%,而生存分数$ 1 \,μ$ m谷物的谷物为$ 26 \,$ 1%。替代团块尺寸或灰尘材料(碳)对生存率具有不可忽略的影响,但与密度对比度,磁场强度和晶粒尺寸相比,影响较低。
Dust grains form in the clumpy ejecta of core-collapse supernovae where they are subject to the reverse shock, which is able to disrupt the clumps and destroy the grains. Important dust destruction processes include thermal and kinetic sputtering as well as fragmentation and grain vaporization. In the present study, we focus on the effect of magnetic fields on the destruction processes. We have performed magneto-hydrodynamical simulations using AstroBEAR to model a shock wave interacting with an ejecta clump. The dust transport and destruction fractions are computed using our post-processing code Paperboats in which the acceleration of grains due to the magnetic field and a procedure that allows partial grain vaporization have been newly implemented. For the oxygen-rich supernova remnant Cassiopeia A we found a significantly lower dust survival rate when magnetic fields are aligned perpendicular to the shock direction compared to the non-magnetic case. For a parallel field alignment, the destruction is also enhanced but at a lower level. The survival fractions depend sensitively on the gas density contrast between the clump and the ambient medium and on the grain sizes. For a low-density contrast of $100$, e.g., $5\,$nm silicate grains are completely destroyed while the survival fraction of $1\,μ$m grains is $86\,$per cent. For a high-density contrast of $1000$, $95\,$per cent of the $5\,$nm grains survive while the survival fraction of $1\,μ$m grains is $26\,$per cent. Alternative clump sizes or dust materials (carbon) have non-negligible effects on the survival rate but have a lower impact compared to density contrast, magnetic field strength, and grain size.