Previous kinematic analysis of the charge-ttnnsfer reaction of Ar+ with Na has shown an energy window near I eV collision energy where quantum-specific and angular-specific scattering is observed. Reactant energy and angular distributions were used to determine the center-of-mass energy distribution
Observation of collision-energy, product-state, and angular-scattering specificity in the charge-transfer reaction of Ar+(2P32) with N2(X 1Σg, υ = 0)
✍ Scribed by Alan L. Rockwood; Stephen L. Howard; Wen-Hu Du; Paolo Tosi; Werner Lindinger; Jean H. Futrell
- Publisher
- Elsevier Science
- Year
- 1985
- Tongue
- English
- Weight
- 532 KB
- Volume
- 114
- Category
- Article
- ISSN
- 0009-2614
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✦ Synopsis
The reaction Ar+(2Pgn) + N,(X tzk,, u = 0) -Ar + Nt(X zag, u") was studred at 1.1 eV coU~~~on energy usmg a crossed-beam method. in contrast wrth results at higher and lower cok~on energtes. the scattenng diagram obtruned at thts energy exhtbtts clearly resolved structure whtch suggests that product tons are produced tn vibrauonai levels u = 1, 2, 3, and possibly 4. Further, the popuhtton of each of these vrbrational levels IS correlated with scattering at specttic center-ofmass angIcs ' Permanent address Northwestern Umverslty. Xlan. Shaanti. Peoples Repubhc of Chma.
📜 SIMILAR VOLUMES
Branching fractions are determined for the product NO (A 'X+, u= 0,l) and NO( B 'II, v= 0) emissions as a function of v' in the energy transfer reaction N,(A 'Z:, v') tNO(X 211n v"=O) in a rapidly pumped discharge-flow reactor operated at a total 2 pressure of TC 2 Torr at % 295 K. Using the NO( A Z