论文标题

超音速星际湍流中分子的增生尘埃生长

Dust growth by accretion of molecules in supersonic interstellar turbulence

论文作者

Li, Xiang-Yu, Mattsson, Lars

论文摘要

我们表明,通过湍流稀释气体的高度可压缩性,冷分子云中的粉尘晶粒的生长速率增强了。通过高分辨率(10243)数值模拟,我们证实了以下理论:空间平均生长速率与气体密度方差成正比。这也导致晶粒大小分布(GSD)扩大,这是由于湍流引起的晶粒生长速率变化。我们首次在对流体动力湍流的详细数值模拟中首次显示,GSD朝着反映气体密度分布的形状演变而成,无论初始分布如何。也就是说,在等温的情况下,旋转强迫湍流,GSD往往是对数正态分布。我们还表明,在超声波湍流中,气体和粉尘的脱钩变得重要,这导致了进一步加速的谷物生长。

We show that the growth rate of dust grains in cold molecular clouds is enhanced by the high degree of compressibility of a turbulent, dilute gas. By means of high resolution (10243) numerical simulations, we confirm the theory that the spatial mean growth rate is proportional to the gas-density variance. This also results in broadening of the grain-size distribution (GSD) due to turbulence-induced variation of the grain-growth rate. We show, for the first time in a detailed numerical simulation of hydrodynamic turbulence, that the GSD evolves towards a shape which is a reflection of the gas-density distribution, regardless of the initial distribution. That is, in case of isothermal, rotationally forced turbulence, the GSD tends to be a lognormal distribution. We also show that in hypersonic turbulence, decoupling of gas and dust becomes important and that this leads to an even further accelerated grain growth.

扫码加入交流群

加入微信交流群

微信交流群二维码

扫码加入学术交流群,获取更多资源