M.B. Stepanov
Saint Petersburg State University
6 Papers
156 Citations
M.B. Stepanov is an academic researcher from Saint Petersburg State University. The author has contributed to research in topics: Rotational–vibrational spectroscopy & Dipole. The author has an hindex of 6, co-authored 6 publications.
Chat about Author
Papers
The `approach-induced' transition
M.E. Akopyan,N.K. Bibinov,Daria B. Kokh,Anatoly Pravilov,M.B. Stepanov,Oleg S. Vasyutinskii +5 more
- 01 Apr 1999
TL;DR: In this paper, the dependences of the I 2 (E, v E ↔ I 2( X ) D, v D ) collision-induced transition rate constant on the vibrational vE, vD, rotational JD numbers, energy gaps, and Franck-Condon factors of the combined levels have been studied.
39
The “approach-induced” and collision-induced transitions from low, vE=8–23, vibronic levels of the I2(E) state
TL;DR: The dependences of the I 2 (E0 g +,v E,J E → I 2( X ) D0 u +, v D,J D ) transition rate constants on the vibrational v E, vD, rotational J E, J D quantum numbers, energy gaps, and Franck-Condon factors of the combined levels have been studied in the range v E =8-23 as discussed by the authors.
28
The approach-induced I2() transitions, M=He, Ar, I2, N2, CF4
TL;DR: In this article, the authors studied the dependence of rate constant of the intramolecular I 2 (E0 g + → M D0 u + ) approach-induced transition, M=He, Ar, I 2, N 2, CF 4, on the vibrational v E, v D, rotational J E, J D numbers, energy gaps, and Franck-Condon factors of the combined levels of the OODR method.
27
The collision-induced transitions, M=He, Ar, N2, CF4
TL;DR: In this article, the dependences of the I 2 (E0 g +,v E,J E → M D0 u +,v D,J D ), M=He, Ar, N2,CF4, transition rate constants on the vibrational vE, vD, rotational JE, JD quantum numbers, energy gaps, as well as their correlations with Franck-Condon factors of the initial and final levels have been studied.
27
The iodine E0g+–B0u+ and D0u+–X0g+ transition dipole moment functions
TL;DR: In this paper, the dipole moment functions for the iodine E0 g + B0 u + and D0 u+ X 0 g + transitions over the regions R = 0.31 −0.48 and 0.305 − 0.45 nm, respectively, from spectrally resolved emission of the E and D states.
27