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Disentangling sequential and concerted fragmentations of molecular polycations with covariant native frame analysis

Burt Michael; Kumagai Yoshiaki; Andrew J.; Howard; Iwayama Hiroshi; Lee Jason W. L.; Michael N. R.; Harries James R.; McManus Joseph W.; Vallance Claire; Hockett Paul; Driver Taran; Kukk Edwin; Walmsley Tiffany; Heathcote David; Forbes Ruaridh; Brouard Mark; Downes-Ward Briony; Ashfold; Minns Russell S.; Rolles Daniel; Allum Felix; Bucksbaum Philip H.; Liu Yusong; Niozu Akinobu; Ueda Kiyoshi; Orr-Ewing Andrew J.; Niskanen Johannes; Rudenko Artem; Unwin James; Britton Mathew; Milesevic Dennis; Nagaya Kiyonobu; Robertson Patrick A.; Owada Shigeki

Disentangling sequential and concerted fragmentations of molecular polycations with covariant native frame analysis

Burt Michael
Kumagai Yoshiaki
Andrew J.
Howard
Iwayama Hiroshi
Lee Jason W. L.
Michael N. R.
Harries James R.
McManus Joseph W.
Vallance Claire
Hockett Paul
Driver Taran
Kukk Edwin
Walmsley Tiffany
Heathcote David
Forbes Ruaridh
Brouard Mark
Downes-Ward Briony
Ashfold
Minns Russell S.
Rolles Daniel
Allum Felix
Bucksbaum Philip H.
Liu Yusong
Niozu Akinobu
Ueda Kiyoshi
Orr-Ewing Andrew J.
Niskanen Johannes
Rudenko Artem
Unwin James
Britton Mathew
Milesevic Dennis
Nagaya Kiyonobu
Robertson Patrick A.
Owada Shigeki
Katso/Avaa
d2cp03029b.pdf (4.789Mb)
Lataukset: 

The Royal Society of Chemistry
doi:10.1039/D2CP03029B
URI
https://pubs.rsc.org/en/content/articlelanding/2022/cp/d2cp03029b
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Julkaisun pysyvä osoite on:
https://urn.fi/URN:NBN:fi-fe2022102463028
Tiivistelmä

We present results from an experimental ion imaging study into the fragmentation dynamics of 1-iodopropane and 2-iodopropane following interaction with extreme ultraviolet intense femtosecond laser pulses with a photon energy of 95 eV. Using covariance imaging analysis, a range of observed fragmentation pathways of the resulting polycations can be isolated and interrogated in detail at relatively high ion count rates (∼12 ions shot−1). By incorporating the recently developed native frames analysis approach into the three-dimensional covariance imaging procedure, contributions from three-body concerted and sequential fragmentation mechanisms can be isolated. The angular distribution of the fragment ions is much more complex than in previously reported studies for triatomic polycations, and differs substantially between the two isomeric species. With support of simple simulations of the dissociation channels of interest, detailed physical insights into the fragmentation dynamics are obtained, including how the initial dissociation step in a sequential mechanism influences rovibrational dynamics in the metastable intermediate ion and how signatures of this nuclear motion manifest in the measured signals.

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