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SIDEBAND OPTICAL-OPTICAL DOUBLE RESONANCE ZEEMAN SPECTROSCOPY .3. ANALYSIS OF COMPOSITE LINES AND SELECTIVE DETECTION

机译:边带光学双共振塞曼光谱.3。复合线分析与选择性检测

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Sideband optical-optical double resonance Zeeman spectroscopy is applied here to studies of the electronic spectrum of gas-phase PtH. Even though each rotational transition is a composite line with closely spaced isotope and hyperfine structure, the sub-Doppler Zeeman spectrum of each feature has been recorded and analyzed using a systematic, quasi-two-dimensional approach. Sub-Doppler radio frequency magnetic resonances, in addition to their diagnostic power to assist rotational and electronic assignment, can also be used to detect selectively other transitions with the same Zeeman properties; if a fixed magnetic field is applied and the sub-Doppler signal recorded as the laser is scanned, spectral features which share the common Zeeman splitting in either the lower or upper state can be detected. Several examples illustrating the selectivity of this scheme are given. (C) 1997 American Institute of Physics. [References: 10]
机译:边带光学双共振塞曼光谱在这里用于研究气相PtH的电子光谱。即使每个旋转跃迁是具有紧密间隔的同位素和超精细结构的复合线,也已使用系统的准二维方法记录和分析了每个特征的亚多普勒塞曼光谱。次多普勒射频磁共振除了具有辅助旋转和电子分配的诊断能力外,还可用于选择性检测具有相同塞曼特性的其他跃迁。如果施加固定磁场并扫描记录为激光的次多普勒信号,则可以检测到在较低或较高状态下共有塞曼分裂的光谱特征。给出了说明该方案选择性的几个例子。 (C)1997美国物理研究所。 [参考:10]

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