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A: Atomphysik
A 11: Poster II
A 11.7: Poster
Dienstag, 4. März 1997, 18:00–20:00, Poster II
PES and Transformation Mechanism of H1+H2L→H1H2+LinEth≤Erel≤3.0eV* — •VictorWeiKeh WU — VictorWeiKeh WU* & GuoZhong HE,*VBRLaboratory,33615Bi/SKLMRD,DaLian,PRChina
The reaction mechanism is mixed via Migration and Stripping. Both can be accompanied by the electron jump. The proportions of both can be estimated by comparison with the calculated Fv of the vib. energies of H1H2 and integral cross sections σH1H2 as the functions of Erel, especially by matching not only the exp.values but also the profiles. Erel,min, where the min. of Fv is, is a suitable criterion of the trend either Migration or Stripping is essential. For the case with the potential barrier (Ba+HBr and Sr+CH3Br), the decreasing Fv-Erel in the region Eth-Erel,min the Migration is the greater part, on the contrary within Erel,min-3.0eV the Stripping part is greater. The heavier L is, to higher Erel the position of Erel,min will be shifted (Ba+HBr at≈0.5eV/Ba+CH3Br≈1.0eV); the lighter the H1 is, to lower Erel the position of Erel,min will be shifted (Ba+HBr/K+HBr at≈0.4eV, Ba+CH3Br/Sr+CH3Br at≈0.75eV). A greater torque because of ΔDoo and potential gradient during the reaction in the bent config. of H1-H2-L1 causes that the rot. excitation is more significant than the vibrational at Erel,min, instead of that the vibrational is more predominant at Erel smaller than Erel,min and downwards to Eth because of the effect of Migration and/or potential well in Ba+CH3Br./1/Victor W.K.WU,Oral & Poster,ISMB XIII,El Escorial (Jun.1991);CAPE IX,Brussels(Jul.1991)/*/Spons. by CAS,VBR & DFG.