Published September 2, 2016 | Version v1
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Electronic correlation processes in deep core-shell photoionization of atoms and molecules

Description

Synchrotron radiation in the tender x-ray energy range (2-13 keV) allows deep core-shell excitation/ionization of atoms and molecules. The electronic states populated have ultrashort lifetimes, in the order of one femtosecond. The atoms will then relax through emission of a photon or an electron. In this thesis, we used electron spectroscopy as a tool to study the different processes implied by the interaction between the matter and highly energetic radiation. In the first part, the lifetime of the excited electronic states is used as an intern clock of the molecule allowing to measure nuclear dynamics in the sub-femtosecond timescale. The lifetime broadenings of the populated electronic states are large enough so that these states overlap, thus allowing their coherent excitation which may lead to interferences phenomena during the relaxation process. This is the subject of the second part of this work, in which we present a model that allows the extraction of these interference terms. In the last part, we show that it is also possible to form multiply excited/ionized electronic states, and that our experimental setup allows to measure their lifetimes, and the disentanglement of the many contributions overlapping in the electron spectra. The Ariadne's thread of this work is to try to apprehend the different electronic correlation processes following the excitation of the studied system by a highly energetic photon, such as how electrons share the incident excess energy or the angular momentum transferred by the incident photon. (author)

Abstract (French)

Le rayonnement synchrotron dans la gamme d'energie des rayons X tendres (2-13 keV) permet l'excitation/ionisation d'atomes et de molecules en couche profonde. Les etats ainsi peuples ont des durees de vie ultra-courtes, de l'ordre de la femtoseconde. Les atomes vont alors se relaxer par emission d'un photon ou d'un electron. Dans cette these, nous avons utilise la spectroscopie d'electrons afin d'etudier les differents processus induits par l'interaction entre la matiere et un rayonnement tres energetique. Dans la premiere partie, la duree de vie des etats electroniques excites est utilisee comme une horloge interne permettant la mesure du mouvement nucleaire a l'echelle de temps sub-femtoseconde. Les elargissements naturels dus a la duree de vie des etats electroniques peuples sont suffisamment grands pour que ces etats se recouvrent, permettant l'excitation simultanee de plusieurs etats intermediaires pouvant causer des phenomenes d'interferences lors de l'etape de relaxation. C'est le sujet de la deuxieme partie de cette these, ou nous presentons un modele permettant d'extraire ces termes d'interferences. Dans la derniere partie, nous montrons qu'il est egalement possible de peupler des etats electroniques multiplement excites/ ionises, et que notre dispositif experimental permet d'en extraire les durees de vie, ainsi que de resoudre toutes les contributions se recouvrant dans les spectres d'electrons. Le fil d'Ariane de ce travail est de tenter d'apprehender les differents processus de correlations electroniques suite a l'excitation du systeme etudie via un photon de haute energie, comme le partage d'exces d'energie ou de moment angulaire entre plusieurs electrons. (auteur)

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Additional details

Additional titles

Original title (French)
Processus de correlations electroniques dans la photoionisation d'atomes et de molecules en couche profonde

Publishing Information

Imprint Pagination
197 p.
Report number
FRNC-TH--11944

Optional Information

Notes
147 refs.; Available from the INIS Liaison Officer for France, see the INIS website for current contact and E-mail addresses