The dynamics of the H+D2O -> OD+HD reaction at 2.5 eV: Experiment and theory

Fully quantum state-resolved OD angular scattering and kinetic energy release distributions for the hot H atom reaction with D2O at a mean collision energy of 2.48 eV are presented. In addition, OD quantum state population distributions and rotational alignment parameters as well as quantum state-av...

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Autori principali: Brouard, M, Burak, I, Minayev, D, O'Keeffe, P, Vallance, C, Aoiz, F, Banares, L, Castillo, J, Zhang, D, Collins, M
Natura: Journal article
Lingua:English
Pubblicazione: 2003
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author Brouard, M
Burak, I
Minayev, D
O'Keeffe, P
Vallance, C
Aoiz, F
Banares, L
Castillo, J
Zhang, D
Collins, M
author_facet Brouard, M
Burak, I
Minayev, D
O'Keeffe, P
Vallance, C
Aoiz, F
Banares, L
Castillo, J
Zhang, D
Collins, M
author_sort Brouard, M
collection OXFORD
description Fully quantum state-resolved OD angular scattering and kinetic energy release distributions for the hot H atom reaction with D2O at a mean collision energy of 2.48 eV are presented. In addition, OD quantum state population distributions and rotational alignment parameters as well as quantum state-averaged internal energy disposals are reported under the same conditions. The experimental data provide a stringent test for quasi-classical trajectory (QCT) scattering calculations, and of the potential energy surfaces they employ.
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spelling oxford-uuid:6fe8b0e9-7ffc-4157-b282-af44131fa1562022-03-26T19:33:44ZThe dynamics of the H+D2O -> OD+HD reaction at 2.5 eV: Experiment and theoryJournal articlehttp://purl.org/coar/resource_type/c_dcae04bcuuid:6fe8b0e9-7ffc-4157-b282-af44131fa156EnglishSymplectic Elements at Oxford2003Brouard, MBurak, IMinayev, DO'Keeffe, PVallance, CAoiz, FBanares, LCastillo, JZhang, DCollins, MFully quantum state-resolved OD angular scattering and kinetic energy release distributions for the hot H atom reaction with D2O at a mean collision energy of 2.48 eV are presented. In addition, OD quantum state population distributions and rotational alignment parameters as well as quantum state-averaged internal energy disposals are reported under the same conditions. The experimental data provide a stringent test for quasi-classical trajectory (QCT) scattering calculations, and of the potential energy surfaces they employ.
spellingShingle Brouard, M
Burak, I
Minayev, D
O'Keeffe, P
Vallance, C
Aoiz, F
Banares, L
Castillo, J
Zhang, D
Collins, M
The dynamics of the H+D2O -> OD+HD reaction at 2.5 eV: Experiment and theory
title The dynamics of the H+D2O -> OD+HD reaction at 2.5 eV: Experiment and theory
title_full The dynamics of the H+D2O -> OD+HD reaction at 2.5 eV: Experiment and theory
title_fullStr The dynamics of the H+D2O -> OD+HD reaction at 2.5 eV: Experiment and theory
title_full_unstemmed The dynamics of the H+D2O -> OD+HD reaction at 2.5 eV: Experiment and theory
title_short The dynamics of the H+D2O -> OD+HD reaction at 2.5 eV: Experiment and theory
title_sort dynamics of the h d2o gt od hd reaction at 2 5 ev experiment and theory
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