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Coulomb-explosion imaging of concurrent CH2BrI photodissociation dynamics

Authors :
Renaud Guillemin
Maria Novella Piancastelli
Alexander S. Gentleman
Artem Rudenko
Jérôme Palaudoux
Thierry Ruchon
O. Travnikova
Rebecca Boll
Felix Brausse
Rolf Treusch
Marc Simon
Arnaud Rouzée
Mark Brouard
Stefan Düsterer
Joss Wiese
Stuart R. Mackenzie
Jochen Küpper
Sebastian Trippel
Loic Journel
Jonathan G. Underwood
Claire Vallance
Michael Burt
Nora Schirmel
Kasra Amini
David M. P. Holland
Farzaneh Ziaee
Francis Penent
Benjamin Erk
Jan Lahl
Per Johnsson
Romain Géneaux
Barbara Cunha de Miranda
Hansjochen Köckert
Andrey S. Mereshchenko
Jongmin Lee
Marie Géléoc
Gildas Goldsztejn
Bastian Manschwetus
Sylvain Maclot
Henrik Stapelfeldt
Daniel Rolles
Cédric Bomme
Iyas Ismail
Simone Techert
Evgeny Savelyev
Tatiana Marchenko
Erland Müller
Dimitrios Rompotis
Pavel K. Olshin
Sadia Bari
Source :
Physical Review A. 96
Publication Year :
2017
Publisher :
American Physical Society (APS), 2017.

Abstract

The dynamics following laser-induced molecular photodissociation of gas-phase CH2BrI at 271.6 nm were investigated by time-resolved Coulomb-explosion imaging using intense near-IR femtosecond laser pulses. The observed delay-dependent photofragment momenta reveal that CH2BrI undergoes C-I cleavage, depositing 65.6% of the available energy into internal product states, and that absorption of a second UV photon breaks the C-Br bond of CH2Br. Simulations confirm that this mechanism is consistent with previous data recorded at 248 nm, demonstrating the sensitivity of Coulomb-explosion imaging as a real-time probe of chemical dynamics.

Details

ISSN :
24699934 and 24699926
Volume :
96
Database :
OpenAIRE
Journal :
Physical Review A
Accession number :
edsair.doi...........ca3f50c69d9685a5922cd1ed1d993a4b
Full Text :
https://doi.org/10.1103/physreva.96.043415