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OPTICAL ZEEMAN SPECTROSCOPY OF THE $A^2\Pi/B^2\Sigma^+$ - $X^2\Sigma^+$ BAND SYSTEMS OF CALCIUM MONOHYDRIDE, CaH1

Please use this identifier to cite or link to this item: http://hdl.handle.net/1811/30538

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Title: OPTICAL ZEEMAN SPECTROSCOPY OF THE $A^2\Pi/B^2\Sigma^+$ - $X^2\Sigma^+$ BAND SYSTEMS OF CALCIUM MONOHYDRIDE, CaH1
Creators: Chen, Jinhai; Gengler, Jamie; Steimle, T. C.; Brown, J. M.
Issue Date: 2005
Abstract: Numerous branch features in the (0,0) band of the $B^2\Sigma^+$ - $X^2\Sigma^+$ system and in the (0,0) band of the $A^2\Pi$ - $X^2\Sigma^+$ system of calcium monohydride, CaH, have been recorded at near the natural line width limit in the presence of a tunable static magnetic field of up to 1200 Gauss. The observed Zeeman induced shifts were successfully modeled using the traditional effective Hamiltonian to account for the $\Delta$v=0 interaction and explicit inclusion of the interaction matrix elements for the perturbations between the (v=1) $A^2\Pi$ and (v=0) $B^2\Sigma^+$ states. A comparison is made with the analysis of the Zeeman effect of the (0,0) $B^2\Sigma^+$ - $X^2\Sigma^+$ $R_1$ (0.5) branch feature}, 2376-2383 (1999).}'}, 289-309 (1999).}.
URI: http://hdl.handle.net/1811/30538
Other Identifiers: 2005-TC-06
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