Literature DB >> 25415260

Analysis of a measurement scheme for ultrafast hole dynamics by few femtosecond resolution X-ray pump-probe Auger spectroscopy.

Bridgette Cooper1, Přemysl Kolorenč, Leszek J Frasinski, Vitali Averbukh, Jon P Marangos.   

Abstract

Ultrafast hole dynamics created in molecular systems as a result of sudden ionisation is the focus of much attention in the field of attosecond science. Using the molecule glycine we show through ab initio simulations that the dynamics of a hole, arising from ionisation in the inner valence region, evolves with a timescale appropriate to be measured using X-ray pulses from the current generation of SASE free electron lasers. The examined pump-probe scheme uses X-rays with photon energy below the K edge of carbon (275-280 eV) that will ionise from the inner valence region. A second probe X-ray at the same energy can excite an electron from the core to fill the vacancy in the inner-valence region. The dynamics of the inner valence hole can be tracked by measuring the Auger electrons produced by the subsequent refilling of the core hole as a function of pump-probe delay. We consider the feasibility of the experiment and include numerical simulation to support this analysis. We discuss the potential for all X-ray pump-X-ray probe Auger spectroscopy measurements for tracking hole migration.

Entities:  

Year:  2014        PMID: 25415260     DOI: 10.1039/c4fd00051j

Source DB:  PubMed          Journal:  Faraday Discuss        ISSN: 1359-6640            Impact factor:   4.008


  2 in total

1.  Electronic quantum coherence in glycine molecules probed with ultrashort x-ray pulses in real time.

Authors:  David Schwickert; Marco Ruberti; Přemysl Kolorenč; Sergey Usenko; Andreas Przystawik; Karolin Baev; Ivan Baev; Markus Braune; Lars Bocklage; Marie Kristin Czwalinna; Sascha Deinert; Stefan Düsterer; Andreas Hans; Gregor Hartmann; Christian Haunhorst; Marion Kuhlmann; Steffen Palutke; Ralf Röhlsberger; Juliane Rönsch-Schulenburg; Philipp Schmidt; Sven Toleikis; Jens Viefhaus; Michael Martins; André Knie; Detlef Kip; Vitali Averbukh; Jon P Marangos; Tim Laarmann
Journal:  Sci Adv       Date:  2022-06-01       Impact factor: 14.957

2.  Attosecond interferometry with self-amplified spontaneous emission of a free-electron laser.

Authors:  Sergey Usenko; Andreas Przystawik; Markus Alexander Jakob; Leslie Lamberto Lazzarino; Günter Brenner; Sven Toleikis; Christian Haunhorst; Detlef Kip; Tim Laarmann
Journal:  Nat Commun       Date:  2017-05-30       Impact factor: 14.919

  2 in total

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