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Dust entrainment in photoevaporative winds: The impact of X-rays

机译:光蒸发风中的灰尘夹带:X射线的影响

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Context. X-ray- and extreme ultraviolet (XEUV) driven photoevaporative winds acting on protoplanetary disks around young T Tauri stars may crucially impact disk evolution, affecting both gas and dust distributions. Aims. We investigate the dust entrainment in XEUV-driven photoevaporative winds and compare our results to existing magnetohydrodynamic and EUV-only models. Methods. We used a 2D hydrodynamical gas model of a protoplanetary disk irradiated by both X-ray and EUV spectra from a central T Tauri star to trace the motion of passive Lagrangian dust grains of various sizes. The trajectories were modelled starting at the disk surface in order to investigate dust entrainment in the wind. Results. For an X-ray luminosity of L _(X)= 2 × 10~(30)erg s~(?1)emitted by a M _(*)= 0.7 M _(⊙)star, corresponding to a wind mass-loss rate of ? _(w)? 2.6 × 10~(?8) M _(⊙)yr~(?1), we find dust entrainment for sizes a _(0)? 11 μ m (9 μ m) from the inner 25 AU (120 AU). This is an enhancement over dust entrainment in less vigorous EUV-driven winds with ? _(w)? 10~(?10) M _(⊙)yr~(?1). Our numerical model also shows deviations of dust grain trajectories from the gas streamlines even for μ m-sized particles. In addition, we find a correlation between the size of the entrained grains and the maximum height they reach in the outflow. Conclusions. X-ray-driven photoevaporative winds are expected to be dust-rich if small grains are present in the disk atmosphere.
机译:语境。 X射线和极端紫外线(XEUV)驱动的光迈向风在幼小T Tauri恒星周围的原始磁盘上作用,可能会强烈影响磁盘进化,影响气体和灰尘分布。目标。我们研究了XEUV驱动的光蒸发风中的灰尘夹带,并将我们的结果与现有的磁力流体和EUV的模型进行了比较。方法。我们使用了由X射线和EUV光谱照射的原始磁盘的2D流体动力学气体模型,从中央T Tauri Star追踪了各种尺寸的被动拉格朗日粉尘颗粒的运动。轨迹是在磁盘表面启动的建模,以便调查风中的灰尘夹带。结果。对于L _(x)= 2×10〜(30)的X射线亮度,由M _(*)= 0.7M _(⊙)星发射的ERG S〜(Δ1),对应于风质量 - 损失率? _(w)? 2.6×10〜(?8)m _(⊙)Yr〜(?1),我们发现灰尘夹带为尺寸A _(0)?来自内部25 AU(120AU)的11μm(9μm)。这是对尘埃夹带的增强在不太剧烈的欧盟驱动的风中? _(w)? 10〜(?10)m _(⊙)Yr〜(?1)。我们的数值模型还显示了甚至用于μM尺寸的颗粒即使对于μM尺寸的颗粒也是灰尘曲面轨迹的偏差。此外,我们在夹带颗粒的尺寸和它们到达流出中的最大高度之间找到了相关性。结论。如果磁盘大气中存在小颗粒,则预期X射线驱动的光迈向风电向富含除尘。

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