Resonance-mediated chemical reaction: F+HD-->HF+D

Conclusive evidence is presented for the existence of a reactive resonance in the F+HD reaction. In a molecular beam experiment, the resonance appears in the integral cross section as a distinct steplike feature, while in the differential cross section it is manifested as sharply varying forward-bac...

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المؤلفون الرئيسيون: Skodje, RT, Skouteris, D, Manolopoulos, D, Lee, S, Dong, F, Liu, K
التنسيق: Journal article
اللغة:English
منشور في: American Inst of Physics 2000
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author Skodje, RT
Skouteris, D
Manolopoulos, D
Lee, S
Dong, F
Liu, K
author_facet Skodje, RT
Skouteris, D
Manolopoulos, D
Lee, S
Dong, F
Liu, K
author_sort Skodje, RT
collection OXFORD
description Conclusive evidence is presented for the existence of a reactive resonance in the F+HD reaction. In a molecular beam experiment, the resonance appears in the integral cross section as a distinct steplike feature, while in the differential cross section it is manifested as sharply varying forward-backward peaks in the product distribution. A detailed analysis of the quantum dynamics establishes that a reactive resonance localized in the transition-state region is responsible for these remarkable observations. At collision energies below 1 kcal/mol, the reaction proceeds almost exclusively through resonant tunneling with very little contribution from the more conventional direct mechanism.
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spelling oxford-uuid:9810fa50-7521-4969-a64f-d0c4ca3d07b32022-03-27T00:04:21ZResonance-mediated chemical reaction: F+HD-->HF+DJournal articlehttp://purl.org/coar/resource_type/c_dcae04bcuuid:9810fa50-7521-4969-a64f-d0c4ca3d07b3EnglishSymplectic Elements at OxfordAmerican Inst of Physics2000Skodje, RTSkouteris, DManolopoulos, DLee, SDong, FLiu, KConclusive evidence is presented for the existence of a reactive resonance in the F+HD reaction. In a molecular beam experiment, the resonance appears in the integral cross section as a distinct steplike feature, while in the differential cross section it is manifested as sharply varying forward-backward peaks in the product distribution. A detailed analysis of the quantum dynamics establishes that a reactive resonance localized in the transition-state region is responsible for these remarkable observations. At collision energies below 1 kcal/mol, the reaction proceeds almost exclusively through resonant tunneling with very little contribution from the more conventional direct mechanism.
spellingShingle Skodje, RT
Skouteris, D
Manolopoulos, D
Lee, S
Dong, F
Liu, K
Resonance-mediated chemical reaction: F+HD-->HF+D
title Resonance-mediated chemical reaction: F+HD-->HF+D
title_full Resonance-mediated chemical reaction: F+HD-->HF+D
title_fullStr Resonance-mediated chemical reaction: F+HD-->HF+D
title_full_unstemmed Resonance-mediated chemical reaction: F+HD-->HF+D
title_short Resonance-mediated chemical reaction: F+HD-->HF+D
title_sort resonance mediated chemical reaction f hd gt hf d
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AT skouterisd resonancemediatedchemicalreactionfhdgthfd
AT manolopoulosd resonancemediatedchemicalreactionfhdgthfd
AT lees resonancemediatedchemicalreactionfhdgthfd
AT dongf resonancemediatedchemicalreactionfhdgthfd
AT liuk resonancemediatedchemicalreactionfhdgthfd