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POLARIZATION DEPENDENT CAVITY RING DOWN SPECTROSCOPY

机译:偏振相关腔衰荡光谱

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We here theoretically outline and experimentally demonstrate that polarization spectroscopy can be combined with cavity ring down (CRD) spectroscopy, thereby retaining the specific advantages of both techniques. The b(1) Sigma(g)(+)(v'= 2) <-- X-3 Sigma(g)(-)(v'' = 0) transition of molecular oxygen around 628 nm is used to demonstrate the possibility to selectively measure either the polarization-dependent absorption or the resonant magneto-optical rotation of gas-phase molecules in the appropriate setup. Just as in CRD absorption spectroscopy, where the rate of absorption is measured, in the here presented polarization-dependent CRD (PDCRD) detection scheme the rate of polarization rotation is measured, which enables the polarization rotation to be quantitatively determined. Apart from studying electro-optic and magneto-optic phenomena on gas-phase species, the PDCRD detection scheme is demonstrated to be applicable to the study of magneto-optical rotation in transparent solid samples as well. (C) 1997 American Institute of Physics. [References: 26]
机译:我们在理论上概述并通过实验证明了偏振光谱可以与腔衰荡(CRD)光谱结合使用,从而保留了这两种技术的特定优势。分子氧在628 nm附近的b(1)Sigma(g)(+)(v'= 2)<-X-3 Sigma(g)(-)(v''= 0)跃迁用于证明分子在适当的设置中选择性测量气相分子的极化相关吸收或共振磁光旋转的可能性。就像在CRD吸收光谱法中测量吸收率一样,在此处介绍的偏振相关CRD(PDCRD)检测方案中,也测量了偏振旋转率,从而可以定量确定偏振旋转。除了研究气相物质的电光和磁光现象外,PDCRD检测方案还被证明可用于研究透明固体样品中的磁光旋转。 (C)1997美国物理研究所。 [参考:26]

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