首页> 外文期刊>The Astrophysical journal >ELECTRONIC TRANSITIONS OF JET-COOLED SiC2, Si2Cn (n=1?3), Si3Cn (n = 1,2), AND SiC6H4 BETWEEN 250 AND 710 nm
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ELECTRONIC TRANSITIONS OF JET-COOLED SiC2, Si2Cn (n=1?3), Si3Cn (n = 1,2), AND SiC6H4 BETWEEN 250 AND 710 nm

机译:JET-COOLED SiC2,Si2Cn(n = 1?3),Si3Cn(n = 1,2)和SiC6H4在250和710 nm之间的电子跃迁

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Electronic transitions of the title molecules were measured between 250 and 710 nm using a mass-resolved 1 + 1' resonant two-photon ionization technique at a resolution of 0.1 nm. Calculations at the B3LYP/aug-cc-pVQZ level of theory support the analyses. Because of their spectral properties, SiC2, linear Si2C2, Si3C, and SiC6H4 are interesting target species for astronomical searches in the visible spectral region. Of special relevance is the Si–C2–Si chain, which features a prominent band at 516.4 nm of a strong transition (f = 0.25). This band and one from SiC6H4 at 445.3 nm were also investigated at higher resolution (0.002 nm).
机译:使用质量分辨的1 +1'共振双光子电离技术,以0.1 nm的分辨率在250和710 nm之间测量了标题分子的电子跃迁。理论上的B3LYP / aug-cc-pVQZ级别的计算支持该分析。由于它们的光谱特性,SiC2,线性Si2C2,Si3C和SiC6H4是在可见光谱区域进行天文搜索的有趣目标物种。特别相关的是Si–C2–Si链,其特征是在强跃迁的516.4 nm处有一个显着的谱带(f = 0.25)。还以更高的分辨率(0.002 nm)研究了该波段和一个来自SiC6H4的波段,其波长为445.3 nm。

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