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星际含氮多环芳烃的理论微波光谱。

Theoretical microwave spectra of interstellar nitrogen-containing PAHs.

作者信息

Vats Akant, Srivastav Satyam, Pandey Anshika, Pathak Amit

机构信息

Department of Physics, Institute of Science, Banaras Hindu University, Varanasi 221005, India.

出版信息

Phys Chem Chem Phys. 2023 Jul 19;25(28):19066-19072. doi: 10.1039/d3cp02722h.

Abstract

The recent discovery of naphthalene (CH) in cyano-substituted polycyclic aromatic hydrocarbon (CN-PAH) form in the Taurus molecular cloud (TMC-1) has sparked curiosity regarding the search for other nitrogen-containing naphthalenes in similar interstellar environments. In this light, naphthalenes having N atoms in the structure are promising candidates to be searched for in cold, dark molecular clouds such as TMC-1. Since obtaining data on such samples in the laboratory is complicated, the present work reports theoretical microwave spectra of naphthalene in all N-substituted forms. Density functional theory (DFT) calculations are employed to calculate the spectroscopic constants and simulate the rotational spectra with hyperfine splitting. For cold temperature regions such as TMC-1 (about 5 K), the considered N-naphthalene species show the strongest transition around centimetre wavelengths, a typical range for PAH-related species in dark molecular clouds. Accurate rotational data provided here may act as a guide for laboratory experiments and astronomical searches.

摘要

最近在金牛座分子云(TMC - 1)中发现了氰基取代多环芳烃(CN - PAH)形式的萘(CH),这引发了人们在类似星际环境中寻找其他含氮萘的好奇心。鉴于此,结构中含有氮原子的萘有望成为在诸如TMC - 1这样寒冷、黑暗的分子云中寻找的候选物质。由于在实验室中获取此类样品的数据很复杂,目前的工作报道了所有N取代形式萘的理论微波光谱。采用密度泛函理论(DFT)计算来计算光谱常数,并模拟具有超精细分裂的转动光谱。对于像TMC - 1(约5 K)这样的低温区域,所考虑的N - 萘物种在厘米波长附近显示出最强的跃迁,这是暗分子云中与PAH相关物种的典型范围。这里提供的精确转动数据可为实验室实验和天文搜索提供指导。

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