STARK SPECTROSCOPY OF $^{13}CD_{3}OH$ AND $CH_{3}OD$ WITH THE HCN LASER.

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1991

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Ohio State University

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Laser Stark Spectra of $^{13}CD_{3}OH$ and $CH_{3}OD$ were investigated at the $\lambda = 311 \mu m$ and 337 $\mu m$ lines of the HCN laser. The spectra were taken for both parallel and perpendicular polarizations at Stark electric fields up to 60000 V/cm. For $^{13}CD_{3}OH$, the extensive series of absorption lines observed at 311 $\mu m$ were assigned to the $J = 8$ to 12 members of the $K = 2 \leftarrow 3 E_{1}$ Q branch in the $v_{t} = 1$ torsional state. One of the resonances observed at $337 \mu m$ was tentatively identified as the $J_{k} - 18_{2} \leftarrow 17_{1}A; v_{t} = 0$ transition. For $CH_{3}OD$, numerous families of resonances were observed at both of the laser lines. The Q branch transition observed at $311 \mu m$ was assigned as $J_{k} = 18_{1} \leftarrow 18_{0} E_{2}, v_{t} = 1$ torsional state. Zero field frequencies for all the assigned transitions are given with improved accuracy over those calculated from available molecular constants.

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Author Institution: Department of Physics, SUNY at Oswego; Department of Physics, University of New Brunswick; Department of Chemsitry, University of Rochester; Center for Advanced Technology, Rajendranagar

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