Back to Search Start Over

Atomic-resolution imaging of carbonyl sulfide by laser-induced electron diffraction

Authors :
Sebastian Trippel
Evangelos T. Karamatskos
Terry Mullins
Rasmus R. Johansen
Gildas Goldsztejn
Philipp Stammer
Jochen Küpper
Marc J. J. Vrakking
Sebastian Raabe
Andrea Trabattoni
Arnaud Rouzée
Henrik Stapelfeldt
Source :
The journal of chemical physics 150(24), 244301 (2019). doi:10.1063/1.5093959, Karamatskos, E T, Goldsztejn, G, Raabe, S, Stammer, P, Mullins, T, Trabattoni, A, Johansen, R R, Stapelfeldt, H, Trippel, S, Vrakking, M J J, Küpper, J & Rouzée, A 2019, ' Atomic-resolution imaging of carbonyl sulfide by laser-induced electron diffraction ', Journal of Chemical Physics, vol. 150, no. 24, 244301 . https://doi.org/10.1063/1.5093959
Publication Year :
2019
Publisher :
American Institute of Physics, 2019.

Abstract

Measurements on the strong-field ionization of carbonyl sulfide molecules by short, intense, 2~\um wavelength laser pulses are presented from experiments where angle-resolved photoelectron distributions were recorded with a high-energy velocity map imaging spectrometer, designed to reach a maximum kinetic energy of 500~eV. The laser-field-free elastic-scattering cross section of carbonyl sulfide was extracted from the measurements and is found in good agreement with previous experiments, performed using conventional electron diffraction. By comparing our measurements to the results of calculations, based on the quantitative rescattering theory (QRS), the bond lengths and molecular geometry were extracted from the experimental differential cross sections to a precision better than $\pm5$~pm and in agreement with the known values.

Details

Language :
English
Database :
OpenAIRE
Journal :
The journal of chemical physics 150(24), 244301 (2019). doi:10.1063/1.5093959, Karamatskos, E T, Goldsztejn, G, Raabe, S, Stammer, P, Mullins, T, Trabattoni, A, Johansen, R R, Stapelfeldt, H, Trippel, S, Vrakking, M J J, Küpper, J & Rouzée, A 2019, ' Atomic-resolution imaging of carbonyl sulfide by laser-induced electron diffraction ', Journal of Chemical Physics, vol. 150, no. 24, 244301 . https://doi.org/10.1063/1.5093959
Accession number :
edsair.doi.dedup.....12aa8cb397769de5ce266b8ce8231c2a
Full Text :
https://doi.org/10.1063/1.5093959