论文标题
太空中的生命种子(Solis)VIII。 SIO同位素分馏和L1157-B1冲击的新见解
Seeds of Life in Space (SOLIS) VIII. SiO isotopic fractionation and a new insight in the shocks of L1157-B1
论文作者
论文摘要
L1157-B1是沿着由0级Protostar L1157毫米驱动的蓝移外流的流出冲击区域之一,并且是研究在非常短的时间尺度中从谷物中弹出的材料的理想实验室,即其化学成分代表了晶粒成分。我们成像$^{28} $ sio,$^{29} $ sio和$^{30} $ sio j = 2-1向L1157-B1和B0发射,北部扩展毫米阵列(Noema)干涉仪是太空中生命种子(SOLIS)大型项目的一部分。我们在这里介绍了SIO对L1157-B1的同位素分馏的研究。此外,我们在主要的同位素学上使用高光谱分辨率观测值,$^{28} $ sio,研究对密集气体的喷射影响。我们在这里还提出了用IRAM 30m望远镜和Herschel-Hifi获得的单次观察。我们使用较大的速度梯度(LVG)代码进行了非LTE分析,以对单次观测进行建模。从我们的观察结果中,我们可以证明(i)(i)(2-1)即使在高速度下,L1157-B1的(2)过渡在L1157-B1中也厚度厚,并且(ii)[$^{29} $ sio/$ sio/$^{30} $ sio]比率是源的恒定的,并且与1.5的太阳值相一致。我们报告了令人震惊的区域中SIO的第一个同位素分馏图,并显示了$^{29} $ SI中没有大量依赖分级分级,而$^{30} $ si跨L1157-B1。已经确定了$^{28} $ sio中的高速子弹,显示了对密集气体影响的射流的签名。在本文中介绍的数据集(干涉和单次)中,我们能够详细研究B1A位置及其周围气体的气体。
L1157-B1 is one of the outflow shocked regions along the blue-shifted outflow driven by the Class 0 protostar L1157-mm, and is an ideal laboratory to study the material ejected from the grains in very short timescales, i.e. its chemical composition is representative of the composition of the grains. We imaged $^{28}$SiO, $^{29}$SiO and $^{30}$SiO J = 2-1 emission towards L1157-B1 and B0 with the NOrthern Extended Millimeter Array (NOEMA) interferometer as part of the Seeds of Life in Space (SOLIS) large project. We present here a study of the isotopic fractionation of SiO towards L1157-B1. Furthermore, we use the high spectral resolution observations on the main isotopologue, $^{28}$SiO, to study the jet impact on the dense gas. We present here also single-dish observations obtained with the IRAM 30m telescope and Herschel-HIFI. We carried out a non-LTE analysis using a Large Velocity Gradient (LVG) code to model the single-dish observations. From our observations we can show that (i) the (2-1) transition of the main isotopologue is optically thick in L1157-B1 even at high velocities, and (ii) the [$^{29}$SiO/$^{30}$SiO] ratio is constant across the source, and consistent with the solar value of 1.5. We report the first isotopic fractionation maps of SiO in a shocked region and show the absence of a mass dependent fractionation in $^{29}$Si and $^{30}$Si across L1157-B1. A high-velocity bullet in $^{28}$SiO has been identified, showing the signature of a jet impacting on the dense gas. With the dataset presented in this paper, both interferometric and single-dish, we were able to study in great detail the gas shocked at the B1a position and its surrounding gas.