论文标题

检测原星磁盘中的HC18O+:探索CO的氧同位素分馏

Detection of HC18O+ in a protoplanetary disk: exploring oxygen isotope fractionation of CO

论文作者

Furuya, Kenji, Tsukagoshi, Takashi, Qi, Chunhua, Nomura, Hideko, Cleeves, L. Ilsedore, Lee, Seokho, Yoshida, Tomohiro C.

论文摘要

已经开发出来解释太阳系材料中的氧同位素异常的氧同位素分级方案预测,在原星磁盘中,CO气体在18O中耗尽了,在磁盘内固体和气体之间的隔离已经发生。根据ALMA的观察,我们报告了II类Protoplanetary磁盘(TW HYA)中HC18O+(4-3)的首次检测。该检测使我们能够从光学薄的HCO+同位素学中探索TW HYA磁盘中CO的氧同位素分馏,作为光学厚CO同位素的代理。使用先前使用SMA获得的H13CO+(4-3)数据,我们发现磁盘中心<100 AU区域中的H13CO+/HC18O+比率为10.3+-3.2。我们用碳和氧同位素分级化学构建了TW HYA磁盘的化学模型,并估计了从H13CO+/HC18O+到13CO/C18O的转化因子。对于转换因子(= 0.8),估计13CO/C18O比为8.3 +-2.6,这与误差率内局部ISM(8.1 +-0.8)中的元素丰度比一致。然后,没有明确的证据表明磁盘的CO气体耗竭,尽管由于大型不确定性,我们无法得出任何强大的结论。总之,HCO+同位素学的光学上细线是CO同位素比的有用示踪剂,几乎不直接从CO同位素的光学厚线直接限制。对H13CO+和HC18O+的未来更高的灵敏度观察将能够使我们更好地限制磁盘中的氧分分馏。

The oxygen isotope fractionation scenario, which has been developed to explain the oxygen isotope anomaly in the solar system materials, predicts that CO gas is depleted in 18O in protoplanetary disks, where segregation between solids and gas inside disks had already occurred. Based on ALMA observations, we report the first detection of HC18O+(4-3) in a Class II protoplanetary disk (TW Hya). This detection allows us to explore the oxygen isotope fractionation of CO in the TW Hya disk from optically thin HCO+ isotopologues as a proxy of optically thicker CO isotopologues. Using the H13CO+(4-3) data previously obtained with SMA, we find that the H13CO+/HC18O+ ratio in the central <100 au regions of the disk is 10.3 +- 3.2. We construct a chemical model of the TW Hya disk with carbon and oxygen isotope fractionation chemistry, and estimate the conversion factor from H13CO+/HC18O+ to 13CO/C18O. With the conversion factor (= 0.8), the 13CO/C18O ratio is estimated to be 8.3 +- 2.6, which is consistent with the elemental abundance ratio in the local ISM (8.1 +- 0.8) within error margin. Then there is no clear evidence of 18O depletion in CO gas of the disk, although we could not draw any robust conclusion due to large uncertainties. In conclusion, optically thin lines of HCO+ isotopologues are useful tracers of CO isotopic ratios, which are hardly constrained directly from optically thick lines of CO isotopologues. Future higher sensitivity observations of H13CO+ and HC18O+ would be able to allow us to better constrain the oxygen fractionation in the disk.

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