Bucher C R, Lehmann K K, Plusquellic D F, Fraser G T
Department of Chemistry, Princeton University, Princeton, New Jersey 08544, USA.
Appl Opt. 2000 Jun 20;39(18):3154-64. doi: 10.1364/ao.39.003154.
We report what we believe to be the first systematic study of Doppler-free, nonlinear absorption by use of cavity ringdown spectroscopy. We have developed a variant of cavity ringdown spectroscopy for the mid-infrared region between 9 and 11 microm, exploiting the intracavity power buildup that is possible with continuous-wave lasers. The infrared source consists of a continuous-wave CO2 laser with 1-mW tunable infrared sidebands that couple into a high-finesse stable resonator. We tune the sideband frequencies to observe a saturated, Doppler-free Lamb dip in the nu7, 11(1,10) <-- 11(2,10) rovibrational transition of ethylene (C2H4). Power studies of the Lamb dip are presented to examine the intracavity effects of saturation on the Lamb-dip linewidth, the peak depth, and the broadband absorption.
我们报告了我们认为首次利用腔衰荡光谱法对无多普勒非线性吸收进行的系统研究。我们开发了一种适用于9至11微米中红外区域的腔衰荡光谱法变体,利用连续波激光器实现腔内功率积累。红外光源由一台连续波二氧化碳激光器组成,其具有1毫瓦可调谐红外边带,这些边带耦合到一个高精细度稳定谐振器中。我们调谐边带频率,以观察乙烯(C2H4)的ν7, 11(1,10) ← 11(2,10)振转跃迁中的饱和无多普勒兰姆凹陷。给出了兰姆凹陷的功率研究,以考察腔内饱和对兰姆凹陷线宽、峰值深度和宽带吸收的影响。