\begin{document}$ \times $\end{document} 300 μm pulsed slit nozzle. Two QCLs running at room temperature are used and each one covers a spectral range of about 3.0 cm–1. The v3 fundamental bands of both 32SF6 and 33SF6 are observed. The rotational temperature of 32SF6 and 33SF6 in the ground state in the supersonic jet are both estimated at 10 K and the linewidth is about 0.0008 cm–1 by comparing the simulated spectrum with the observed spectrum with the PGOPHER program. A new weak vibrational band centered around 941.0 cm–1 is observed and tentatively assigned to the (v1+v2+v3)–(v1+v2) hot band of 32SF6. The effective Hamiltonian used to analyze the rovibrational spectrum of SF6 is briefly introduced. A simplified rotational analysis for this hot band is performed with the XTDS program developed by the Dijon group. The band-origin of this hot band is determined to be 941.1785(21) cm–1. The rotational temperature of this hot band is estimated at 50 K. A new scheme by measuring the jet-cooled absorption spectrum of this hot band of 32SF6 and the v3 fundamental band of 33SF6 is proposed for measuring the relative abundance of 33SF6/32SF6."> High-resolution jet-cooled laser absorption spectra of SF<sub>6</sub> at 10.6 μm - 必威体育下载

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    Yuan Hong-Rui, Liu Tao, Zhu Tian-Xin, Liu Yun, Li Xiang, Chen Yang, Duan Chuan-Xi
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    • Abstract views:3286
    • PDF Downloads:78
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    Publishing process
    • Received Date:30 November 2022
    • Accepted Date:31 December 2022
    • Available Online:18 January 2023
    • Published Online:20 March 2023

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