Evaporation, fission and auto-dissociation of doubly charged water

dc.contributor.authorMontenegro, E.C.
dc.contributor.authorScully, S.W.J.
dc.contributor.authorWyer, J.A.
dc.contributor.authorSenthil, V.
dc.contributor.authorShah, M.B.
dc.date.accessioned2014-02-12T09:41:40Z
dc.date.accessioned2022-07-11T09:44:25Z
dc.date.available2014-02-12T09:41:40Z
dc.date.available2022-07-11T09:44:25Z
dc.date.issued2007-03
dc.description.abstractThe paths and mechanisms leading to fragmentation of multiply charged molecules are still not well known. Multiply charged molecules can remain intact, or fragment via evaporation - eliminating light neutral atoms such as H0 or via fission - ejecting one H+, or they can breaking up into two or more charged species [S.W.J. Scully, J.A. Wyer, V. Senthil, M.B. Shah, E.C. Montenegro, Phys. Rev. A 71 (2005) 030701(R)]. Small molecules, such as water and methane, are unstable after two or more electron removal. In this work we present experimental results of fragmentation of doubly charged water molecules by 30-1500 eV electrons. We show that, at low energies, doubly charged water essentially undergoes fission but, as the electron energy increases, the complete break-up of water becomes progressively dominant. The contribution to double ionization from auto-ionization [S.W.J. Scully, J.A. Wyer, V. Senthil, M.B. Shah, E.C. Montenegro, Phys. Rev. A 73 (2006) 040701(R)] of singly charged water molecules is discussed.en_US
dc.identifier.issn03682048
dc.identifier.urihttp://repo.lib.jfn.ac.lk/ujrr/handle/123456789/261
dc.language.isoenen_US
dc.publisherElsevier B.V. All rights reserveden_US
dc.subjectElectron impacten_US
dc.subjectFragmentationen_US
dc.subjectIonizationen_US
dc.subjectWateren_US
dc.titleEvaporation, fission and auto-dissociation of doubly charged wateren_US
dc.typeArticleen_US

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