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Near-infrared spectroscopy of CH2 by frequency modulated diode laser absorption

机译:调频二极管激光吸收对CH2的近红外光谱

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A diode laser spectrometer incorporating a multi-pass Herriott type cell and frequency modulation detection was used to record a previously unaccessed region of the near-infrared singlet<--singlet absorption spectrum of methylene between 10 000 cm(-1) and 10 600 cm(-1). With this spectrometer, signal-to-noise ratios close to the quantum noise Limit have been attained. Identification of rovibronic transitions to five previously unobserved levels, K=1 (a) over tilde(0,9,0), K=2 (b) over tilde(0,1,0), K =2 (a) over tilde(1,6,0), K=3 (b) over tilde(0,1,0) and K=3 (a) over tilde(0,10,0), was made. Despite the fact that the present spectra access levels within approximately 1300 cm(-1) of the barrier to linearity, the spectrum is dense and perturbed, characteristics in common with spectra recorded in many previous studies at shorter wavelengths. Recent spectroscopic observations of halomethylenes [J. Mel. Spectrosc. 188, 68 (1998)] had suggested that the CH2 spectrum might become simpler at longer wavelengths, but this was not evident in the observed spectra. The mixed nature of the singlet states is evidenced by the assignment of rovibronic transitions to levels containing primarily (a) over tilde (1)A(1) state character. The new measurements provide a stringent test for modern theoretical models for CH2 and will enable refinement of the electronic potential surfaces. (C) 1998 American Institute of Physics. [References: 40]
机译:二极管激光光谱仪结合了多路Herriott型样品池和频率调制检测功能,用于记录近红外单峰<-单峰吸收光谱在10000 cm(-1)至10 600 cm之间的亚甲基的单峰吸收光谱(-1)。使用这种光谱仪,已经达到了接近量子噪声极限的信噪比。识别转子振动到五个以前未观察到的水平,波浪号(0,9,0)上的K = 1(a),波浪线(0,1,0)上的K = 2(b),波浪线上的K = 2(a) (1,6,0),在波浪号(0,1,0)上K = 3(b),在波浪号(0,10,0)上K = 3(a)。尽管目前的光谱访问水平在线性障碍的大约1300 cm(-1)内,但该光谱是密集且受干扰的,这是许多先前研究在较短波长下记录的光谱的共同特征。卤代亚甲基的最新光谱观察[J.梅尔光谱。 188,68(1998)]提出,CH2光谱在更长的波长下可能会变得更简单,但这在观察到的光谱中并不明显。单峰态的混合性质可以通过将电子振动跃迁分配给主要包含(a)超过波浪号(1)A(1)状态特征的水平来证明。新的测量结果为现代CH2理论模型提供了严格的测试,并将使电子势能表面得以完善。 (C)1998美国物理研究所。 [参考:40]

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