The feasibility of determining nuclear quadrupole hyperfine splittings in the ground electronic state of a polyatomic molecule using a double resonance quantum beat method has been demonstrated. Pyrimidine molecules were coherently excited into single rotational states of the So 201 ( 13a ~) vibrati
Determination of the ground-state Landé factor for diatomic molecules by a beat-resonance method
✍ Scribed by M.P. Auzin'sh; K.A. Nasyrov; M.Ya. Tamanis; R.S. Ferber; A.M. Shalagin
- Book ID
- 107734700
- Publisher
- Elsevier Science
- Year
- 1990
- Tongue
- English
- Weight
- 562 KB
- Volume
- 167
- Category
- Article
- ISSN
- 0009-2614
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📜 SIMILAR VOLUMES
## Abstract A solution of the wave equation for the nuclear motion of a diatomic molecule with an exponential potential function and the rotational term included has been performed by the Schrödinger‐Infeld‐Hull factorization method. Two different procedures have been followed for the factorization
By introducing the IR-UV pump-probe technique to detect molecular quantum beats, this phenomenon is utilized as a Doppler-free time domain spectroscopy for the electronic ground state. The technique is demonstrated with Stark quantum beats of vibrationally excited So levels to determine the electric