论文标题

尘埃传递和光蒸发风中的夹带

Dust delivery and entrainment in photoevaporative winds

论文作者

Hutchison, Mark A., Clarke, Cathie J.

论文摘要

我们对经历极端光电蒸发的湍流原球电视盘中的气体和灰尘动态进行建模,以便更好地表征热风中的灰尘特性(例如尺寸分布,通量速率,轨迹)。我们的半分析方法使我们能够快速计算这些灰尘特性,而无需诉诸昂贵的流体动力模拟。我们发现光蒸发会在光盘中产生垂直气流,以帮助湍流为电离界提供灰尘。我们检查了将灰尘传递到电离锋的递送及其随后的夹带中上覆的风。我们为最大晶粒尺寸得出一个简单的分析标准,该标准可以夹带,并表明这与以前的模拟结果非常吻合,在光蒸发中由一系列辐射类型驱动。我们表明,与磁性驱动的风相比,我们预计光盘内的大规模尘埃运输不会通过光蒸发影响。我们还表明,可以夹在风中的谷物的最大尺寸($ s {\ rm max} $)大于一个数量级,比单独通过对流可以传递到前面的最大谷物大小($ s _ {\ rm Crit} $μ{\ rm m} $用于t tauri星星)。我们进一步研究了如何仅通过湍流扩散将更大的谷物(最高限制尺寸$ s _ {\ rm limit} $传递到前面。在所有情况下,我们都会发现$ s _ {\ rm max} \ gtrsim s _ {\ rm limit} $,以便我们希望我们希望将任何交付到前面的灰尘都散布在风中,并且大多数夹带的灰尘遵循接近气体的轨迹。

We model the gas and dust dynamics in a turbulent protoplanetary disc undergoing extreme-UV photoevaporation in order to better characterise the dust properties in thermal winds (e.g. size distribution, flux rate, trajectories). Our semi-analytic approach allows us to rapidly calculate these dust properties without resorting to expensive hydrodynamic simulations. We find that photoevaporation creates a vertical gas flow within the disc that assists turbulence in supplying dust to the ionisation front. We examine both the delivery of dust to the ionisation front and its subsequent entrainment in the overlying wind. We derive a simple analytic criterion for the maximum grain size that can be entrained and show that this is in good agreement with the results of previous simulations where photoevaporation is driven by a range of radiation types. We show that, in contrast to the case for magnetically driven winds, we do not expect large scale dust transport within the disc to be effected by photoevaporation. We also show that the maximum size of grains that can be entrained in the wind ($s_{\rm max}$) is around an order of magnitude larger than the maximum size of grains that can be delivered to the front by advection alone ($s_{\rm crit} \lesssim 1$ $μ{\rm m}$ for Herbig Ae/Be stars and $\lesssim 0.01$ $μ{\rm m}$ for T Tauri stars). We further investigate how larger grains, up to a limiting size $s_{\rm limit}$, can be delivered to the front by turbulent diffusion alone. In all cases, we find $s_{\rm max} \gtrsim s_{\rm limit}$ so that we expect that any dust that is delivered to the front can be entrained in the wind and that most entrained dust follows trajectories close to that of the gas.

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