论文标题
振动激发的ALO和TIO的旋转光谱富含氧气
Rotational spectra of vibrationally excited AlO and TiO in oxygen rich stars
论文作者
论文摘要
在300 GHz范围(1 mm波长)朝着富含氧气的AGB恒星R DOR和IK TAU的300 GHz范围(1 mm波长)中观察到振动激发的ALO和TIO中的旋转过渡 - 两个可能的粉尘前体,与Alma一起观察到振动型ALMA,并观察到振动性激发的Alo朝向SMA的红色超级VY CMA。 $ j = 11 \至10 $在$ v = 1〜 {\ rm {and}}} 〜2 $ latver中的TIO过渡,以及$ n = 9 \至8 $ transition在$ v = 2 $级别的Alo级别中被确定为r dor dor; $ j = 11 \至10 $ tio行在$ v = 1 $级别的IK tau中确定; $ v = 1〜 {\ rm {and}} 〜2 $ alo级别的两个过渡被识别为Vy CMA。 TIO和ALO的新衍生的高振动温度为$ 1800 \ pm 200 $ k,并且对角度范围的先前测量结果证实,大部分发射来自中央星星的$ \ lyssim2r _ {\ star} $的区域。 R dor中ALO的全面辐射转移分析产生了$ \ sim的分数丰度,$ \ sim $ 3%的Al太阳丰度。通过对TIO的类似分析,发现了$ \ sim78 $%的TI太阳丰度的分数丰度。该观察结果提供了间接证据,表明靠近恒星的旋转磁盘中存在TIO。需要在地面上进行进一步的观察和激发振动水平,以确定ALO,TIO和TIO $ _2 $是A $ _2 $ o $ o $ _3 $的种子R dor中的灰尘,也许是在其他质量损失率低的AGB星星中的重力粉尘壳中。
Rotational transitions in vibrationally excited AlO and TiO -- two possible precursors of dust -- were observed in the 300 GHz range (1 mm wavelength) towards the oxygen rich AGB stars R Dor and IK Tau with ALMA, and vibrationally excited AlO was observed towards the red supergiant VY CMa with the SMA. The $J=11 \to 10$ transition of TiO in the $v=1~{\rm{and}}~2$ levels, and the $N = 9 \to 8$ transition in the $v=2$ level of AlO were identified towards R Dor; the $J=11 \to 10$ line of TiO was identified in the $v=1$ level towards IK Tau; and two transitions in the $v=1~{\rm{and}}~2$ levels of AlO were identified towards VY CMa. The newly-derived high vibrational temperature of TiO and AlO in R Dor of $1800 \pm 200$ K, and prior measurements of the angular extent confirm that the majority of the emission is from a region within $\lesssim2R_{\star}$ of the central star. A full radiative transfer analysis of AlO in R Dor yielded a fractional abundance of $\sim$3% of the solar abundance of Al. From a similar analysis of TiO a fractional abundance of $\sim78$% of the solar abundance of Ti was found. The observations provide indirect evidence that TiO is present in a rotating disk close to the star. Further observations in the ground and excited vibrational levels are needed to determine whether AlO, TiO, and TiO$_2$ are seeds of the Al$_2$O$_3$ dust in R Dor, and perhaps in the gravitationally bound dust shells in other AGB stars with low mass loss rates.