论文标题

X射线光蒸发和分析MHD模型的原球电磁风诊断线的解释

The interpretation of protoplanetary disc wind diagnostic lines from X-ray photoevaporation and analytical MHD models

论文作者

Weber, Michael L., Ercolano, Barbara, Picogna, Giovanni, Hartmann, Lee, Rodenkirch, Peter J.

论文摘要

典型风诊断的高分辨率光谱([[OI]6300Å和其他禁止的排放线)通常可以分解为多个组件:高速级别的成分,其蓝光最高可归因于几个100 km/s,通常归因于快速喷气机,而狭窄(nlvc)和(blvc)较小(BLVC)低级别的低级构成供应范围,以供不应使用。在假设线路的假设是由开普勒旋转主导的,几项研究发现,BLVC应追踪在0.05和0.5 AU之间发射的气体,并且BLVC和NLVC的性质之间的相关性已解释为已解释为迹象表明延长的MHD风和光evevapapapoparative风的证据。我们计算了从X射线光蒸发模型和简单的MHD风模型的详细光电离计算获得的合成线曲线,并分析了不同诊断线的发射区和所得的频谱轮廓。光蒸发模型重现了大多数观察到的NLVC,而不是BLVC或HVC。 MHD模型能够重现所有组件,但在平均观察到的平均倾斜度下产生开普勒双峰。 MHD和光蒸发风的组合可以解决此问题。我们的结果表明,高斯分解不允许从不同风区明确区分通量,并且线扩大通常由流出速度梯度而不是开普勒旋转主导。我们表明,观察到的BLVC和NLVC之间的相关性并不一定意味着在延长的MHD风中的共同起源。

High resolution spectra of typical wind diagnostics ([OI] 6300 Å and other forbidden emission lines) can often be decomposed into multiple components: high-velocity components with blueshifts up to several 100 km/s are usually attributed to fast jets, while narrow (NLVC) and broad (BLVC) low-velocity components are believed to trace slower disc winds. Under the assumption that the line-broadening is dominated by Keplerian rotation, several studies have found that the BLVCs should trace gas launched between 0.05 and 0.5 au and correlations between the properties of BLVCs and NLVCs have been interpreted as evidence for the emission tracing an extended MHD wind and not a photoevaporative wind. We calculated synthetic line profiles obtained from detailed photoionisation calculations of an X-ray photoevaporation model and a simple MHD wind model and analyzed the emission regions of different diagnostic lines and the resulting spectral profiles. The photoevaporation model reproduces most of the observed NLVCs but not the BLVCs or HVCs. The MHD model is able to reproduce all components but produces Keplerian double peaks at average inclinations that are rarely observed. The combination of MHD and photoevaporative winds could solve this problem. Our results suggest that the Gaussian decomposition does not allow for a clear distinction of flux from different wind regions and that the line broadening is often dominated by the velocity gradient in the outflow rather than by Keplerian rotation. We show that observed correlations between BLVC and NLVC do not necessarily imply a common origin in an extended MHD wind.

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