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Vinyl cyanide (CH2CHCN) in interstellar space: potential spectral lines for its detection

机译:星际空间中的氰化乙烯(CH2CHCN):潜在的光谱线

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摘要

Vinyl cyanide is a molecule having planar geometry with electric dipole moment components, μa=3.821D and μb=0.687D. Thus, a-type transitions are very strong as compared to b-type transitions, and are considered in this investigation. The rotational levels for a-type transitions, may be divided into two distinct groups: one group having odd values of ka and the other having even values of ka. Using the known values of rotational and centrifugal distortion constant along with the electric dipole moment μa, we have calculated energies of lower 120 rotational levels, having energy up to 92cm1, for each group, and the probabilities for radiative transitions between the levels. These radiative transition probabilities in conjunction with the scaled values of collisional rate coefficients are used in the Sobolev Large Velocity Gradient analysis. Out of a large number of lines, we have selected the strongest ones. In the low lying levels, besides the 4 observed lines of CH2CHCN, we have discussed about 8 additional transitions, of which 2 showing the phenomenon of anomalous absorption and 6 showing emission feature are found. These lines may play important role for the search of vinyl cyanide in a cosmic object.
机译:氰化乙烯是一种具有平面几何结构且具有电偶极矩分量的分子, μ a = 3.821 D μ b = 0.687 D 。因此,与b型过渡相比,a型过渡非常坚固,并在本研究中被考虑。 a型转换的旋转级别可以分为两个不同的组:一组具有 k a 另一个具有 < mi> k a 。使用已知的旋转和离心畸变常数值以及电偶极矩 μ a ,我们计算出了较低的能量120个旋转级别,能量最高达到 92 cm - 1 ,以及每个级别之间的辐射跃迁概率。这些辐射过渡概率与碰撞率系数的标定值一起在Sobolev大速度梯度分析中使用。从大量的行中,我们选择了最强的行。在低水平,除了观察到的4条CH2CHCN谱线外,我们还讨论了大约8个附加跃迁,其中2个显示异常吸收现象,6个显示发射特征。这些线对于在宇宙物体中搜寻乙烯基氰可能起重要作用。

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