Stimulated emission pumping of p‐difluorobenzene cooled in a supersonic free jet. Vibrational relaxation in S0 induced by very low energy collisions
Author:
Publisher
AIP Publishing
Subject
Physical and Theoretical Chemistry,General Physics and Astronomy
Link
http://aip.scitation.org/doi/pdf/10.1063/1.452687
Reference15 articles.
1. Selective vibrational excitation by stimulated emission pumping
2. Vibrational relaxation in ground state p‐difluorobenzene: Single level preparation by stimulated emission pumping
3. Vibrational relaxation in ground state p‐difluorobenzene: Single level preparation by stimulated emission pumping
4. Collisional deactivation of a selected energy level inS0p‐difluorobenzene embedded in a dense vibrational field: Absolute rate constants for a variety of collision partners
5. Level dependence of vibrational relaxation rates inS0p‐difluorobenzene in the range εvib=1500–3300 cm−1: Large efficiencies with He as a collision partner
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1. Vibrational relaxation dynamics of I35Cl(B, v′) induced by low-temperature collisions with He atoms;Physical Chemistry Chemical Physics;2005
2. Semiempirical Model of Vibrational Relaxation for Estimating Absolute Rate Coefficients;The Journal of Physical Chemistry A;2003-11-15
3. THE DYNAMICS OF “STRETCHED MOLECULES”: Experimental Studies of Highly Vibrationally Excited Molecules With Stimulated Emission Pumping;Annual Review of Physical Chemistry;2001-10
4. Optimal control of population transfer in an optically dense medium;The Journal of Chemical Physics;1996-01-22
5. Vibrational Energy Transfer;The Journal of Physical Chemistry;1996-01-01
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