Iwakuni Kana, Okubo Sho, Yamada Koichi M T, Inaba Hajime, Onae Atsushi, Hong Feng-Lei, Sasada Hiroyuki
Department of Physics, Faculty of Science and Technology, Keio University, Yokohama 223-8522, Japan.
National Metrology Institute of Japan (NMIJ), National Institute of Advanced Industrial Science and Technology (AIST), Tsukuba 305-8563, Japan.
Phys Rev Lett. 2016 Sep 30;117(14):143902. doi: 10.1103/PhysRevLett.117.143902. Epub 2016 Sep 29.
We demonstrate that dual-comb spectroscopy, which allows one to record broadband spectra with high frequency accuracy in a relatively short time, provides a real advantage for the observation of pressure-broadening and pressure-shift effects. We illustrate this with the ν_{1}+ν_{3} vibration band of ^{12}C_{2}H_{2}. We observe transitions from P(26) to R(29), which extend over a 3.8 THz frequency range, at six pressures ranging up to 2654 Pa. Each observed absorption line profile is fitted to a Voigt function yielding pressure-broadening and pressure-shift coefficients for each rotation-vibration transition. The effectiveness of this technique is such that we are able to discern a clear dependence of the pressure-broadening coefficients on the nuclear spin state, i.e., on the ortho or para modification. This information, combined with the pressure-shift coefficients, can facilitate a detailed understanding of the mechanism of molecular collisions.
我们证明,双梳光谱技术能够在相对较短的时间内以高精度记录宽带光谱,这为观察压力展宽和压力位移效应提供了真正的优势。我们以(^{12}C_{2}H_{2})的(ν_{1}+ν_{3})振动带为例进行说明。我们在高达(2654)帕的六种压力下,观测到了从(P(26))到(R(29))的跃迁,这些跃迁覆盖了(3.8)太赫兹的频率范围。对每个观测到的吸收线轮廓进行拟合,得到每个转动 - 振动跃迁的压力展宽和压力位移系数。该技术的有效性使我们能够清晰地辨别压力展宽系数对核自旋态的依赖关系,即对正构或异构变体的依赖关系。这些信息与压力位移系数相结合,有助于详细了解分子碰撞的机制。