论文标题
两个原星盘的动态质量测量
Dynamical mass measurements of two protoplanetary discs
论文作者
论文摘要
ALMA对行星形成光盘的线排放的观察已证明是探测内部盘的运动运动学的绝佳工具,通常揭示出与它们中发生的重要动力学过程相关的微妙效果,例如湍流或行星的存在,可以从与燃气运动或行星尾随的燃气运动相处的压力上推断出来。特别是,我们最近显示了Elias 2-27中巨大的椎间盘的情况,人们如何使用这种观察值来测量盘式自我重力引起的开普勒式的偏差,从而以良好的精度限制了总圆盘质量,并独立于示踪剂使用和总质量之间的质量转换因子独立于质量转换因子。在这里,我们完善了我们的方法论,并将其扩展到两个其他来源,即GM Aur和Im Lup,为12CO和13CO线都可以使用档案线观测值。对于IM LUP,我们能够获得MDISC = 0.1 MSUN的一致圆盘质量,这意味着圆盘-10.1(与连续排放中观察到的螺旋结构一致),气体/尘埃比约为65(与标准假设一致),由于因子〜2的旋转方法而导致的系统不确定〜2(与标准假设相一致)。对于GM AUR,我们使用的两条线提供了稍微不一致的旋转曲线,这不能仅归因于发射层高度的差,也不能归因于垂直温度分层。我们最适合的圆盘质量测量是MDISC = 0.26msun,这意味着圆盘星质量比约为0.35,气/灰尘比为〜130 ...删节
ALMA observations of line emission from planet forming discs have demonstrated to be an excellent tool to probe the internal disc kinematics, often revealing subtle effects related to important dynamical processes occurring in them, such as turbulence, or the presence of planets, that can be inferred from pressure bumps perturbing the gas motion, or from detection of the planetary wake. In particular, we have recently shown for the case of the massive disc in Elias 2-27 how one can use such kind of observations to measure deviations from Keplerianity induced by the disc self-gravity, thus constraining the total disc mass with good accuracy and independently on mass conversion factors between the tracer used and the total mass. Here, we refine our methodology and extend it to two additional sources, GM Aur and IM Lup, for which archival line observations are available for both the 12CO and the 13CO line. For IM Lup, we are able to obtain a consistent disc mass of Mdisc=0.1 Msun, implying a disc-star mass ratio of 0.1 (consistent with the observed spiral structure in the continuum emission) and a gas/dust ratio of ~ 65 (consistent with standard assumptions), with a systematic uncertainty by a factor ~2 due to the different methods to extract the rotation curve. For GM Aur, the two lines we use provide slightly inconsistent rotation curves, that cannot be attributed only to a difference in the height of the emitting layer, nor to a vertical temperature stratification. Our best fit disc mass measurement is Mdisc=0.26Msun, implying a disc-star mass ratio of ~0.35 and a gas/dust ratio of ~130... ABRIDGED