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Laboratory blueprints for interstellar searches of aromatic chiral molecules: rotational signatures of styrene oxide

机译:芳香手性分子的术语中的实验室蓝图:苯乙烯氧化物的旋转签名

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The tracking of symmetry-breaking events in space is a long-lasting goal of astrochemists, aiming at an understanding of homochiral Earth chemistry. One current effort at this frontier aims at the detection of small chiral molecules in the interstellar medium. For that, high-resolution laboratory spectroscopy data is required, providing blueprints for the search and assignment of these molecules using radioastronomy. Here, we used chirped-pulse Fourier transform microwave and millimeter-wave spectroscopy and frequency modulation absorption spectroscopy to record and assign the rotational spectrum of the chiral aromatic molecule styrene oxide, C6H5C2H3O, a relevant candidate for future radioastronomy searches. Using experimental data from the 2-12, 75-110, 170-220, and 260-330 GHz regions, we performed a global spectral analysis, which was complemented by quantum chemistry calculations. A global fit of the ground state rotational spectrum was obtained, including rotational transitions from all four frequency regions. Primary rotational constants as well as quartic and sextic centrifugal distortion constants were determined. We also investigated vibrationally excited states of styrene oxide, and for the three lowest energy vibrational states, we determined rotational constants including centrifugal distortion corrections up to the sextic order. In addition, spectroscopic parameters for the singly-substituted(13)C and(18)O isotopologues were retrieved from the spectrum in natural abundance and used to determine the effective ground state structure of styrene oxide in the gas phase. The spectroscopic parameters and line lists of rotational transitions obtained here will assist future astrochemical studies of this class of chiral organic molecules.
机译:空间中对称性事件的跟踪是星星学家的长期目标,旨在理解冠长地球化学。在该前沿的目前努力旨在检测间隙培养基中的小手性分子。为此,需要高分辨率实验室光谱数据,为使用射线结构进行搜索和分配这些分子的蓝图。在这里,我们使用啁啾脉冲傅里叶变换微波和毫米波光谱和频率调节吸收光谱,记录和分配手性芳香分子苯乙烯氧化苯乙烯的旋转谱,C6H5C2H3O,未来的放射线图中的相关候选者。使用来自2-12,75-110,170-220和260-330 GHz区域的实验数据,我们进行了全局光谱分析,该分析由量子化学计算辅成。获得了地面旋转光谱的全局拟合,包括来自所有四个频率区域的旋转过渡。确定主要旋转常数以及四分之一和六分层离心畸变常数。我们还研究了振动激发的苯乙烯氧化物状态,并且对于三种最低能量振动状态,我们确定了旋转常数,包括离心畸变校正,直到奇数顺序。另外,从天然丰度的光谱检索单位上取代的(13)C和(18)o同位素的光谱参数,并用于确定气相中苯乙烯氧化物的有效接地状态结构。这里获得的旋转转变的光谱参数和线列表将有助于这类手性有机分子的未来星形研究。

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