Modulation of photoemission anysotropy in molecular attosecond pump-probe ionization
ORAL
Abstract
Extreme ultraviolet attosecond pulses (XUV) can excite molecules into a coherent superposition of states, either in the bound region of the spectrum or encompassing several photoelectron-photoion pairs [1,2]. Such coherent wavepackets require a correlated wave-function approach to accurately describe their evolution. Here we present results computed with ASTRA (AttoSecond TRAnsitions), a new close-coupling implementation of the multichannel molecular ionization based on high-order transition density matrices between correlated ionic states [3]. We study the time-dependent asymmetry in the photoelectron angular distributions of excited ethylene and pyrazine, in which a coherent superposition of ∏g and ∏u states has been induced by an attosecond-XUV pulse. The anysotropy dynamics in the photoemission angular distribution can be mapped to the molecular valence charge migration, offering an experimental mean to its study [4]. ASTRA has been validated by comparing partial photoionization cross sections and molecular-frame photoelectron angular distributions for the CO, H2CO, ethylene and pyrazine molecules, finding excellent agreement with benchmarks available in the literature [5,6].
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Publication: [1] J. Duris et al, Nat. Phot. 14, 30 (2020)<br>[2] N. Saito et al, Optica 6, 1542 (2019)<br>[3] J. M. Randazzo et al, Phys. Rev. Res. 5, 043115 (2023)<br>[4] K. J. Yuan et al, J. Phys. Chem. A 122, 2241 (2018)<br>[5] I. Cacelli et al, CPC 347, 261 (2001)<br>[6] V. Borràs et al, Comput. Phys. Commun. 296, 109033 (2024) <br>
Presenters
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Carlos A Marante Valdes
University of Central Florida
Authors
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Carlos A Marante Valdes
University of Central Florida
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Juan M Randazzo
Consejo Nacional de Investigaciones Cientificas y Tecnicas, Argentina
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Barry I Schneider
National Institute of Standards and Tech
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Luca Argenti
University of Central Florida