Lucchesini A, Gozzini S
Istituto per i Processi Chimico-Fisici del CNR, Area della Ricerca, Via G. Moruzzi 1, I-56124 Pisa, Italy.
Spectrochim Acta A Mol Biomol Spectrosc. 2004 Dec;60(14):3381-6. doi: 10.1016/j.saa.2003.11.039.
Some overtone absorption lines of ammonia and ethylene have been examined by using a tunable diode laser (TDL) spectrometer in the region around 12,650 and 11,800 cm(-1), respectively. The spectrometer sources are commercially available double heterostructure InGaAlAs and AlGaAs TDLs operating in the "free-running" mode. The high resolving power ( approximately 10(7) ) of the spectrometer permitted the detection and the study of the line positions of such molecules with a precision better than 0.01 cm(-1). In order to maximize the signal to noise ratio and to extract the necessary informations either on the line width and on the line position for the detected molecular resonances, the wavelength modulation spectroscopy (WMS) along with the second harmonic detection techniques have been applied. For this purpose, the fitting procedure took into account the instrumental effects and the amplitude modulation (AM) always associated with the frequency modulation (FM) of these type of sources. This technique permitted also the measurement of the collisional-broadening and -shifting coefficients by different buffer gases at room temperature.
利用可调谐二极管激光(TDL)光谱仪分别在12650 cm⁻¹和11800 cm⁻¹附近区域对氨和乙烯的一些泛音吸收线进行了研究。光谱仪的光源是市售的双异质结构InGaAlAs和AlGaAs TDL,工作在“自由运行”模式。光谱仪的高分辨率(约10⁷)使得能够检测和研究此类分子的谱线位置,精度优于0.01 cm⁻¹。为了最大化信噪比,并提取有关检测到的分子共振的线宽和线位置的必要信息,采用了波长调制光谱法(WMS)以及二次谐波检测技术。为此,拟合过程考虑了仪器效应以及与这类光源的频率调制(FM)始终相关的幅度调制(AM)。该技术还允许在室温下测量不同缓冲气体的碰撞展宽和频移系数。