Hudson Reggie L, Loeffler Mark J, Ferrante Robert F, Gerakines Perry A, Coleman Falvia M
Astrochemistry Laboratory, NASA Goddard Space Flight Center, Greenbelt, MD, 20771 USA.
Department of Physics and Astronomy, Northern Arizona University, Flagstaff, AZ 86011 USA.
Astrophys J. 2020 Mar 1;891(1). doi: 10.3847/1538-4357/ab6efa. Epub 2020 Feb 28.
The use of infrared spectra to determine molecular abundances of icy astronomical objects and to study their chemistry requires laboratory measurements of reference spectra and related quantities, such as the index of refraction () and density () of candidate ices. Here we present new and measurements on ices involving C-, H-, and O-containing compounds, both acyclic and cyclic, representing seven chemical families. We examine the results in a way that is rare in the astrochemical literature, namely one in which data from an ice formed from molecules of a particular chemical family are compared to measurements on another member of the same family, such as of a homologous series or a pair of isomers. Apart from the intrinsic usefulness of the and data, a structure-based comparison can help establish trends and identify possibly spurious results. As liquid-phase data sometimes are used in low-temperature astrochemical work in the absence of solid-phase measurements, we compare our new ice results to those for the corresponding room-temperature liquids. We emphasize the use of our and data to compute the molar refraction ( ) for each of our ices, and how the resulting values compare to those expected from molecular structures. The use of calculated values and measured values to calculate ice densities, in the absence of direct measurements, also is addressed.
利用红外光谱来确定冰冷天体的分子丰度并研究其化学性质,需要对参考光谱和相关量进行实验室测量,例如候选冰的折射率()和密度()。在此,我们展示了对包含碳、氢和氧的化合物(包括无环和环状)所形成的冰的新的和测量结果,这些化合物代表了七个化学家族。我们以一种在天体化学文献中很少见的方式来审视结果,即把由特定化学家族的分子形成的冰的数据与同一家族的另一个成员(如同系物系列或一对异构体)的测量结果进行比较。除了和数据本身的用处外,基于结构的比较有助于建立趋势并识别可能虚假的结果。由于在缺乏固相测量的情况下,液相数据有时会用于低温天体化学研究中,我们将新的冰的结果与相应室温液体的结果进行了比较。我们强调利用我们的和数据来计算每种冰的摩尔折射度(),以及所得的值与分子结构预期值的比较情况。在没有直接测量的情况下,还讨论了使用计算值和测量值来计算冰密度的问题。