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Laboratory spectroscopic study and astronomical detection of vibrationally excited n-propyl cyanide

机译:振动激发的正丙基氰化物的实验室光谱研究和天文检测

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Context. We performed a spectral line survey called Exploring Molecular Complexity with ALMA (EMoCA) toward Sagittarius B2(N) between 84.1 and 114.4 GHz with the Atacama Large Millimeter/submillimeter Array (ALMA) in its Cycles 0 and 1. We determined line intensities of n -propyl cyanide in the ground vibrational states of its gauche and anti conformers toward the hot molecular core Sagittarius B2(N2) which suggest that we should also be able to detect transitions pertaining to excited vibrational states. Aims. We wanted to determine spectroscopic parameters of low-lying vibrational states of both conformers of n -propyl cyanide to search for them in our ALMA data. Methods. We recorded laboratory rotational spectra of n -propyl cyanide in two spectral windows between 36 and 127 GHz. We searched for emission lines produced by these states in the ALMA spectrum of Sagittarius B2(N2). We modeled their emission and the emission of the ground vibrational states assuming local thermodynamic equilibrium (LTE). Results. We have made extensive assignments of a - and b -type transitions of the four lowest vibrational states of the gauche conformer which reach J and K _( a ) quantum numbers of 65 and 20, respectively. We assigned mostly a -type transitions for the anti conformer with J and K _( a ) quantum numbers up to 48 and 24, respectively. Rotational and Fermi perturbations between two anti states allowed us to determine their energy difference. The resulting spectroscopic parameters enabled us to identify transitions of all four vibrational states of each conformer in our ALMA data. The emission features of all states, including the ground vibrational state, are well-reproduced with the same LTE modeling parameters, which gives us confidence in the reliability of the identifications, even for the states with only one clearly detected line. Conclusions. Emission features pertaining to the highest excited vibrational states of n -propyl cyanide reported in this work have been identified just barely in our present ALMA data. Features of even higher excited vibrational states may become observable in future, more sensitive ALMA spectra to the extent that the confusion limit will not have been reached. The ~(13) C isotopomers of this molecule are expected to be near the noise floor of our present ALMA data. We estimate that transitions of vibrationally excited iso -propyl cyanide or aminoacetonitrile, for example, are near the noise floor of our current data as well.
机译:上下文。我们使用周期为0和1的阿塔卡马大毫米/亚毫米阵列(ALMA),在84.1和114.4 GHz之间对射手座B2(N)进行了射向人马座B2(N)的光谱线调查,称为ALMA(EMoCA)。我们确定了线强度n -丙基氰化物在其纱团的基态振动状态和反构象分子对热分子核心人马座B2(N2)的暗示下,这表明我们还应该能够检测与激发振动态有关的跃迁。目的我们想要确定两个正丙基氰化物构象物的低振动态的光谱学参数,以在我们的ALMA数据中进行搜索。方法。我们在36至127 GHz之间的两个光谱窗口中记录了正丙基氰化物的实验室旋转光谱。我们在人马座B2(N2)的ALMA光谱中搜索这些状态产生的发射线。我们模拟了它们的发射以及假设局部热力学平衡(LTE)的基态振动发射。结果。我们对gauche构形子的四个最低振动态的a和b型跃迁进行了广泛的分配,它们分别达到了65和20的J和K _(a)量子数。我们主要为反构象者分配了一个J型跃迁,其J和K _(a)量子数分别高达48和24。两个反态之间的旋转和费米摄动使我们能够确定它们的能量差。由此产生的光谱参数使我们能够识别ALMA数据中每个构形体的所有四个振动状态的转变。使用相同的LTE建模参数可以很好地再现所有状态(包括地面振动状态)的发射特征,这使我们对标识的可靠性充满信心,即使对于只有一条清晰检测到的线的状态也是如此。结论。在我们目前的ALMA数据中,几乎没有发现与这项工作中报道的与正丙基氰化物的最高激发振动态有关的排放特征。更高的激发振动状态的特征将来可能会变得更明显,更灵敏的ALMA光谱将达到无法达到混淆极限的程度。预期该分子的〜(13)C同位素异构体接近我们目前的ALMA数据的本底噪声。我们估计振动激发的异丙基氰化物或氨基乙腈的跃迁也接近我们当前数据的本底噪声。

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