Abstract
Hyperfine structure on the 414 – 404 rotation–inversion transition in NH2D was measured with a two-cavity maser spectrometer with 350-Hz linewidth. A reasonably good fit to the observed transitions is obtained by including the nitrogen quadrupole interaction, the nitrogen spin–rotation interaction, the deuteron quadrupole interaction, the deuteron spin–rotation interaction, and the nitrogen–deuteron spin–spin interaction in the Hamiltonian. The values of the coupling constants obtained are: for the 414 state (eqJQ)N = − 1895.65 ± 0.7 kHz, (eqJQ)D = − 75.78 ± 0.7 kHz, and for the 404 state (eqJQ)N = − 1811.55 ± 0.7 kHz, (eqJQ)D = − 80.13 ± 0.7 kHz, and for the values of the other parameters averaged over these states CN = 5.027 ± 0.18 kHz, CD = − 2.33 ± 0.18 kHz,and DND = 0.307 ± 0.70 kHz. The rotation–inversion frequency for this transition is 25 023 794.706 ± 0.07 kHz.
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