Rotational energy transfer in highly vibrationally excited hydrogen fluoride and deuterium fluoride. Summary report Jun 82-May 83
Technical Report
·
OSTI ID:5343590
Overtone vibration-laser double resonance measurements have provided new data on vibrational and rotational relaxation in HF(v = 2). These experiments determine the magnitudes of the total vibrational relaxation rate constants for HF(v = 1 and 2) as well as their temperature dependences. Rotational relaxation data come from these measurements as well. The temporal evolution of individual rotational states observed in the double resonance studies provides level-to-level energy transfer rate constants when analyzed using an iterative fitting scheme which incorporates scaling relations among the rate constants.
- Research Organization:
- Wisconsin Univ., Madison (USA). Dept. of Chemistry
- OSTI ID:
- 5343590
- Report Number(s):
- AD-A-133102/4
- Country of Publication:
- United States
- Language:
- English
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Related Subjects
74 ATOMIC AND MOLECULAR PHYSICS
37 INORGANIC
ORGANIC
PHYSICAL AND ANALYTICAL CHEMISTRY
DEUTERIUM COMPOUNDS
ENERGY LEVELS
HYDROFLUORIC ACID
ENERGY TRANSFER
EXCITATION
ITERATIVE METHODS
LASERS
RELAXATION
ROTATIONAL STATES
VIBRATIONAL STATES
ENERGY-LEVEL TRANSITIONS
EXCITED STATES
HYDROGEN COMPOUNDS
INORGANIC ACIDS
640302* - Atomic
Molecular & Chemical Physics- Atomic & Molecular Properties & Theory
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37 INORGANIC
ORGANIC
PHYSICAL AND ANALYTICAL CHEMISTRY
DEUTERIUM COMPOUNDS
ENERGY LEVELS
HYDROFLUORIC ACID
ENERGY TRANSFER
EXCITATION
ITERATIVE METHODS
LASERS
RELAXATION
ROTATIONAL STATES
VIBRATIONAL STATES
ENERGY-LEVEL TRANSITIONS
EXCITED STATES
HYDROGEN COMPOUNDS
INORGANIC ACIDS
640302* - Atomic
Molecular & Chemical Physics- Atomic & Molecular Properties & Theory
400202 - Isotope Effects
Isotope Exchange
& Isotope Separation