论文标题
与阿尔玛的大麦芽云中检测到氘化水
The Detection of Deuterated Water in the Large Magellanic Cloud with ALMA
论文作者
论文摘要
我们报告了对犹太水(HDO)的首次检测到层外热核。 HDO 2 $ _ {11} $ -2 $ _ {12} $线已被检测到在低金属金属型麦哲伦云(LMC)Dwarf Galaxy的N105恒星形成区域的热核N105-2A和2B,该区域与Atacama大型毫米/simbillimeter/simbillimeter(Alma)。我们已经将对LMC Hot核心测量的HDO线发光度($ L _ {\ rm HDO} $)与观察到的那些对$ l _ {\ rm HDO} $中的三个数量级的十七个银河热核的样本进行了比较,批量的批量量为4次,$ l l _ {半乳缘距离(因此是金属性)。 LMC热核的$ L _ {\ rm HDO} $的观察值非常适合$ L _ {\ rm HDO} $趋势,带有$ l _ {\ rm bol} $ and Metallicity和金属性观察到了银河热核。我们发现$ l _ {\ rm hdo} $似乎在很大程度上取决于源亮度,但金属性也起着作用。我们通过假设hdo/h $ _2 $ o朝着LMC热核与以银河系相同的方式提供了对LMC热核的粗略估计。估计的范围系统地低于银河系值。 N105-2A中HDO发射的空间分布和速度结构与HDO是低温粉尘粒化学的产物一致。我们的结果与天体化学模型的预测一致,即HDO丰富,无论是在乳层外环境中,都应在外部星系中检测到Alma。
We report the first detection of deuterated water (HDO) toward an extragalactic hot core. The HDO 2$_{11}$-2$_{12}$ line has been detected toward hot cores N105-2A and 2B in the N105 star-forming region in the low-metallicity Large Magellanic Cloud (LMC) dwarf galaxy with the Atacama Large Millimeter/submillimeter Array (ALMA). We have compared the HDO line luminosity ($L_{\rm HDO}$) measured toward the LMC hot cores to those observed toward a sample of seventeen Galactic hot cores covering three orders of magnitude in $L_{\rm HDO}$, four orders of magnitude in bolometric luminosity ($L_{\rm bol}$), and a wide range of Galactocentric distances (thus metallicities). The observed values of $L_{\rm HDO}$ for the LMC hot cores fit very well into the $L_{\rm HDO}$ trends with $L_{\rm bol}$ and metallicity observed toward the Galactic hot cores. We have found that $L_{\rm HDO}$ seems to be largely dependent on the source luminosity, but metallicity also plays a role. We provide a rough estimate of the H$_2$O column density and abundance ranges toward the LMC hot cores by assuming that HDO/H$_2$O toward the LMC hot cores is the same as that observed in the Milky Way; the estimated ranges are systematically lower than Galactic values. The spatial distribution and velocity structure of the HDO emission in N105-2A is consistent with HDO being the product of the low-temperature dust grain chemistry. Our results are in agreement with the astrochemical model predictions that HDO is abundant regardless of the extragalactic environment and should be detectable with ALMA in external galaxies.