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- W2324831966 abstract "High-resolution laser excitation spectroscopy has been used to record the ÃE2-X̃A12 electronic transition of SrCH3 in a laser ablation/molecular jet source. Transitions arising from the K′=1←K″=0, K′=0←K″=1, and K′=2←K″=1 subbands have been observed and assigned. The data were modeled with E2 and A12 symmetric top Hamiltonian matrices in a Hund’s case (a) basis, using a least squares fitting program. Rotational and fine structure parameters for the ÃE2 state were determined. A comparison of the spin-orbit energy separation in the ÃE2 state to other strontium containing free radicals showed that the Jahn-Teller effect is negligible. The spin-rotation constants for the ÃE2 state were calculated using the pure precession model and were found to be in good agreement with the experimentally determined parameters. These calculations suggest that the ÃE2 state of SrCH3 is not entirely of p orbital character. The rotational constants were used to estimate the structural parameters of SrCH3 in the ÃE2 state. The strontium-carbon bond length was found to decrease by ∼0.006Å, and the hydrogen-carbon-hydrogen bond angle opened by ∼0.8° compared to the X̃A12 state, similar to the geometry changes observed for CaCH3." @default.
- W2324831966 created "2016-06-24" @default.
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- W2324831966 date "2006-05-04" @default.
- W2324831966 modified "2023-09-23" @default.
- W2324831966 title "High-resolution laser excitation spectroscopy of the ÃE2-X̃A12 transition of SrCH3" @default.
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- W2324831966 doi "https://doi.org/10.1063/1.2189236" @default.
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