Resonant and non resonant K− production in pp reactions at 2.85 GeV
✍ Scribed by J. Ritman; F. Balestra; Y. Bedfer; R. Bertini; L.C. Bland; A. Brenschede; F. Brochard; M.P. Bussa; S. Choi; M. Debowski; R. Dressler; M. Dzemidzic; J.-Cl. Faivre; I.V. Falomkin; L. Fava; L. Ferrero; J. Foryciarz; I. Fröhlich; V. Frolov; R. Garfagnini; A. Grasso; E. Grosse; S. Heinz; V.V. Ivanov; W.W. Jacobs; W. Kühn; A. Maggiora; M. Maggiora; A. Manara; D. Panzieri; H.-W. Pfaff; G. Piragino; G.B. Pontecorvo; A. Popov; P. Salabura; V. Tchalyshev; F. Tosello; S.E. Vigdor; G. Zosi
- Publisher
- Elsevier Science
- Year
- 2001
- Tongue
- English
- Weight
- 230 KB
- Volume
- 691
- Category
- Article
- ISSN
- 0375-9474
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Energy transfer rate constants have been measured by the laser-induced fluorescence technique for the non-resonant vibrational deactivation of N, (u= I ) and '3C'60 (v-I ) by CH4 and O2 both in liquid N2 and in liquid Ar solution at 85 K. CO( v= 1) and Ns(n= I ) behave similarly in liquid Ar solutio
Rate constants for vibrational energy transfer have been measured in the system N2( v= 1) +CO( u= 0) as a function of energy mismatch by using isotopic derivatives of N2 and of CO. These rate constants have been determined both in the gas phase and in liquid argon solution at 8 5 K. For non-resonant