论文标题

确定精确的休息频率和Cyanobutadiyne的超细结构参数,HC $ _5 $ n

Determination of accurate rest frequencies and hyperfine structure parameters of cyanobutadiyne, HC$_5$N

论文作者

Giesen, Thomas F., Harding, Michael E., Gauss, Jürgen, Grabow, Jens-Uwe, Müller, Holger S. P.

论文摘要

HC $ _5 $ n的非常精确的过渡频率在5.3和21.4 GHz之间确定,并具有傅立叶变换微波光谱仪。分子是通过将HC $ _3 $ N和C $ _2 $ h $ _2 $的混合物通过放电阀高度稀释而产生的,然后将超音速扩展到光谱仪的Fabry-Perot腔中。数据的准确性使我们能够大大改善实验性$^{14} $ n核四极耦合参数,并首先对$^{14} $ n核自旋旋转参数进行了第一个实验确定。过渡频率也非常适合确定天文学观察,其局部速度的局部速度具有高忠诚度的分子云。尽管有适度的改进,但使用了相同的设置来研究HC $ _7 $N。进行量子化学计算以确定$^{14} $ N核四极杆和HC $ _5 $ N,HC $ _7 $ N和相关分子的旋转耦合参数。这些计算包括评估对非相关平衡四极耦合参数的振动和相对论校正;他们的考虑改善了计算值和实验值之间的一致性。

Very accurate transition frequencies of HC$_5$N were determined between 5.3 and 21.4 GHz with a Fourier transform microwave spectrometer. The molecules were generated by passing a mixture of HC$_3$N and C$_2$H$_2$ highly diluted in neon through a discharge valve followed by supersonic expansion into the Fabry-Perot cavity of the spectrometer. The accuracies of the data permitted us to improve the experimental $^{14}$N nuclear quadrupole coupling parameter considerably and the first experimental determination of the $^{14}$N nuclear spin-rotation parameter. The transition frequencies are also well suited to determine in astronomical observations the local speed of rest velocities in molecular clouds with high fidelity. The same setup was used to study HC$_7$N, albeit with modest improvement of the experimental $^{14}$N nuclear quadrupole coupling parameter. Quantum chemical calculations were carried out to determine $^{14}$N nuclear quadrupole and spin-rotation coupling parameters of HC$_5$N, HC$_7$N, and related molecules. These calculations included evaluation of vibrational and relativistic corrections to the non-relativistic equilibrium quadrupole coupling parameters; their considerations improved the agreement between calculated and experimental values substantially.

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