Spontaneous decay of small carbon cluster dianions Cn2− (n=7-11)

Synopsis We have studied the stabilities of small carbon dianion clusters, Cn2−(n = 7 - 11) in the cryogenic electrostatic ion storage ring, DESIREE. We observe spontaneous electron emission for tens of milliseconds, where dianions containing an even number of carbons decay slower in comparison to t...

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Published inJournal of physics. Conference series Vol. 1412; no. 23; p. 232014
Main Authors Najeeb, P K, Stockett, M H, Anderson, E K, Eklund, G, Kristiansson, M K, Rosén, S, Chartkunchand, K C, Gnaser, H, Golser, R, Hanstorp, D, Cederquist, H, Schmidt, H T, Zettergren, H
Format Journal Article
LanguageEnglish
Published IOP Publishing 01.01.2020
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Abstract Synopsis We have studied the stabilities of small carbon dianion clusters, Cn2−(n = 7 - 11) in the cryogenic electrostatic ion storage ring, DESIREE. We observe spontaneous electron emission for tens of milliseconds, where dianions containing an even number of carbons decay slower in comparison to their neighbouring cluster sizes. For all the systems considered here, we find that there is a component which is stable at least on the time scales of hundreds of milliseconds.
AbstractList Synopsis We have studied the stabilities of small carbon dianion clusters, C n 2 − (n = 7 – 11) in the cryogenic electrostatic ion storage ring, DESIREE. We observe spontaneous electron emission for tens of milliseconds, where dianions containing an even number of carbons decay slower in comparison to their neighbouring cluster sizes. For all the systems considered here, we find that there is a component which is stable at least on the time scales of hundreds of milliseconds.
Synopsis We have studied the stabilities of small carbon dianion clusters, Cn2−(n = 7 - 11) in the cryogenic electrostatic ion storage ring, DESIREE. We observe spontaneous electron emission for tens of milliseconds, where dianions containing an even number of carbons decay slower in comparison to their neighbouring cluster sizes. For all the systems considered here, we find that there is a component which is stable at least on the time scales of hundreds of milliseconds.
Author Anderson, E K
Cederquist, H
Kristiansson, M K
Najeeb, P K
Zettergren, H
Stockett, M H
Hanstorp, D
Rosén, S
Gnaser, H
Chartkunchand, K C
Eklund, G
Golser, R
Schmidt, H T
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  organization: Department of Physics, Stockholm University , Sweden
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  organization: Institute for Isotope Physics, University of Vienna , Austria
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  organization: Department of Physics, Chalmers University of Technology and Göteborg University , Sweden
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  organization: Department of Physics, Stockholm University , Sweden
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Cites_doi 10.1021/cr0104227
10.1063/1.5010077
10.1103/PhysRevLett.65.625
10.1021/j100087a017
10.1016/0168-583X(93)96004-V
10.1063/1.472156
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Chartkunchand (JPCS_1412_23_232014bib6) 2018; 89
Calabrese (JPCS_1412_23_232014bib3) 1996; 105
Sommerfeld (JPCS_1412_23_232014bib5) 1994; 98
Schauer (JPCS_1412_23_232014bib1) 1990; 65
Hansen (JPCS_1412_23_232014bib7) 2013
Dreuw (JPCS_1412_23_232014bib4) 2002; 102
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Snippet Synopsis We have studied the stabilities of small carbon dianion clusters, Cn2−(n = 7 - 11) in the cryogenic electrostatic ion storage ring, DESIREE. We...
Synopsis We have studied the stabilities of small carbon dianion clusters, C n 2 − (n = 7 – 11) in the cryogenic electrostatic ion storage ring, DESIREE. We...
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Title Spontaneous decay of small carbon cluster dianions Cn2− (n=7-11)
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