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Dive into the research topics where G. Goldsztejn is active.

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Featured researches published by G. Goldsztejn.


Nature Communications | 2014

Atomic Auger Doppler effects upon emission of fast photoelectrons

Marc Simon; R. Püttner; T. Marchenko; Renaud Guillemin; R. K. Kushawaha; L. Journel; G. Goldsztejn; Maria Novella Piancastelli; James M. Ablett; Jean-Pascal Rueff; Denis Céolin

Studies of photoemission processes induced by hard X-rays including production of energetic electrons have become feasible due to recent substantial improvement of instrumentation. Novel dynamical phenomena have become possible to investigate in this new regime. Here we show a significant change in Auger emission following 1s photoionization of neon, which we attribute to the recoil of the Ne ion induced by the emission of a fast photoelectron. Because of the preferential motion of the ionized Ne atoms along two opposite directions, an Auger Doppler shift is revealed, which manifests itself as a gradual broadening and doubling of the Auger spectral features. This Auger Doppler effect should be a general phenomenon in high-energy photoemission of both isolated atoms and molecules, which will have to be taken into account in studies of other recoil effects such as vibrational or rotational recoil in molecules, and may also have consequences in measurements in solids.


Journal of Physics B | 2014

Core-hole-clock spectroscopies in the tender x-ray domain

Maria Novella Piancastelli; G. Goldsztejn; T. Marchenko; Renaud Guillemin; R. K. Kushawaha; L. Journel; S. Carniato; Jean-Pascal Rueff; Denis Céolin; Marc Simon

The core-hole-clock method to observe dynamical phenomena in molecular photoexcitation on the 1 fs-hundreds-of-attoseconds time scale is illustrated with examples from resonant inelastic x-ray scat ...


Physical Review Letters | 2016

Hard-X-Ray-Induced Multistep Ultrafast Dissociation.

O. Travnikova; T. Marchenko; G. Goldsztejn; K. Jänkälä; Nicolas Sisourat; S. Carniato; Renaud Guillemin; Loïc Journel; Denis Céolin; R. Püttner; H. Iwayama; Eiji Shigemasa; Maria Novella Piancastelli; Marc Simon

Creation of deep core holes with very short (τ≤1  fs) lifetimes triggers a chain of relaxation events leading to extensive nuclear dynamics on a few-femtosecond time scale. Here we demonstrate a general multistep ultrafast dissociation on an example of HCl following Cl 1s→σ^{*} excitation. Intermediate states with one or multiple holes in the shallower core electron shells are generated in the course of the decay cascades. The repulsive character and large gradients of the potential energy surfaces of these intermediates enable ultrafast fragmentation after the absorption of a hard x-ray photon.


Physical Review A | 2017

Coulomb-explosion imaging of concurrent CH2BrI photodissociation dynamics.

Michael Burt; Rebecca Boll; Jason W. L. Lee; Kasra Amini; Hansjochen Köckert; Claire Vallance; Alexander S. Gentleman; Stuart R. Mackenzie; Sadia Bari; Cédric Bomme; S. Düsterer; Benjamin Erk; Bastian Manschwetus; Erland Müller; Dimitrios Rompotis; Evgeny Savelyev; Nora Schirmel; Simone Techert; Rolf Treusch; Jochen Küpper; Sebastian Trippel; Joss Wiese; Henrik Stapelfeldt; Barbara Cunha de Miranda; Renaud Guillemin; I. Ismail; Loïc Journel; T. Marchenko; Jérôme Palaudoux; F. Penent

The dynamics following laser-induced molecular photodissociation of gas-phase CH2BrI at 271.6 nm were investigated by time-resolved Coulomb-explosion imaging using intense near-IR femtosecond laser pulses. The observed delay-dependent photofragment momenta reveal that CH2BrI undergoes C-I cleavage, depositing 65.6% of the available energy into internal product states, and that absorption of a second UV photon breaks the C-Br bond of CH2Br. Simulations confirm that this mechanism is consistent with previous data recorded at 248 nm, demonstrating the sensitivity of Coulomb-explosion imaging as a real-time probe of chemical dynamics.


Scientific Reports | 2017

Cationic double K-hole pre-edge states of CS2 and SF6

Raimund Feifel; J.H.D. Eland; S. Carniato; P. Selles; R. Puettner; D. Koulentianos; T. Marchenko; L. Journel; Renaud Guillemin; G. Goldsztejn; O. Travnikova; I. Ismail; B. Cunha de Miranda; A. F. Lago; Denis Céolin; P. Lablanquie; F. Penent; Maria Novella Piancastelli; M. Simon

Recent advances in X-ray instrumentation have made it possible to measure the spectra of an essentially unexplored class of electronic states associated with double inner-shell vacancies. Using the technique of single electron spectroscopy, spectra of states in CS2 and SF6 with a double hole in the K-shell and one electron exited to a normally unoccupied orbital have been obtained. The spectra are interpreted with the aid of a high-level theoretical model giving excellent agreement with the experiment. The results shed new light on the important distinction between direct and conjugate shake-up in a molecular context. In particular, systematic similarities and differences between pre-edge states near single core holes investigated in X-ray absorption spectra and the corresponding states near double core holes studied here are brought out.


Physical Review Letters | 2017

Subfemtosecond Control of Molecular Fragmentation by Hard X-Ray Photons

O. Travnikova; Nicolas Sisourat; T. Marchenko; G. Goldsztejn; Renaud Guillemin; L. Journel; Denis Céolin; I. Ismail; A. F. Lago; R. Püttner; M. N. Piancastelli; M. Simon

Tuning hard x-ray excitation energy along Cl 1s→σ^{*} resonance in gaseous HCl allows manipulating molecular fragmentation in the course of the induced multistep ultrafast dissociation. The observations are supported by theoretical modeling, which shows a strong interplay between the topology of the potential energy curves, involved in the Auger cascades, and the so-called core-hole clock, which determines the time spent by the system in the very first step. The asymmetric profile of the fragmentation ratios reflects different dynamics of nuclear wave packets dependent on the photon energy.


Physical Review A | 2018

Time-resolved inner-shell photoelectron spectroscopy : From a bound molecule to an isolated atom

Felix Brauße; G. Goldsztejn; Kasra Amini; Rebecca Boll; Sadia Bari; Cédric Bomme; M. Brouard; Michael Burt; Barbara Cunha de Miranda; S. Düsterer; Benjamin Erk; M. Géléoc; Romain Géneaux; Alexander S. Gentleman; Renaud Guillemin; I. Ismail; Per Johnsson; Loïc Journel; Thomas Kierspel; Hansjochen Köckert; Jochen Küpper; P. Lablanquie; Jan Lahl; Jason W. L. Lee; Stuart R. Mackenzie; Sylvain Maclot; Bastian Manschwetus; Andrey S. Mereshchenko; Terence Mullins; Pavel K. Olshin

Due to its element and site specificity, inner-shell photoelectron spectroscopy is a widely used technique to probe the chemical structure of matter. Here, we show that time-resolved inner-shell photoelectron spectroscopy can be employed to observe ultrafast chemical reactions and the electronic response to the nuclear motion with high sensitivity. The ultraviolet dissociation of iodomethane (CH3I) is investigated by ionization above the iodine 4d edge, using time-resolved inner-shell photoelectron and photoion spectroscopy. The dynamics observed in the photoelectron spectra appear earlier and are faster than those seen in the iodine fragments. The experimental results are interpreted using crystal-field and spin-orbit configuration interaction calculations, and demonstrate that time-resolved inner-shell photoelectron spectroscopy is a powerful tool to directly track ultrafast structural and electronic transformations in gas-phase molecules.


Journal of Chemical Physics | 2018

Double-core-hole states in CH3CN: Pre-edge structures and chemical-shift contributions

D. Koulentianos; S. Carniato; R. Püttner; G. Goldsztejn; T. Marchenko; O. Travnikova; L. Journel; Renaud Guillemin; Denis Céolin; M. L. M. Rocco; M. N. Piancastelli; Raimund Feifel; M. Simon

Spectra reflecting the formation of single-site double-core-hole pre-edge states involving the N 1s and C 1s core levels of acetonitrile have been recorded by means of high-resolution single-channel photoelectron spectroscopy using hard X-ray excitation. The data are interpreted with the aid of ab initio quantum chemical calculations, which take into account the direct or conjugate nature of this type of electronic states. Furthermore, the photoelectron spectra of N 1s and C 1s singly core-ionized states have been measured. From these spectra, the chemical shift between the two C 1s-1 states is estimated. Finally, by utilizing C 1s single and double core-ionization potentials, initial and final state effects for the two inequivalent carbon atoms have been investigated.


29th International Conference on Photonic, Electronic, and Atomic Collisions (ICPEAC), JUL 22-28, 2015, Toledo, SPAIN | 2015

Photo-induced ultrafast dissociation following deep-core-electron excitation

O. Travnikova; T. Marchenko; G. Goldsztejn; Renaud Guillemin; Loïc Journel; Denis Céolin; K. Jänkälä; R. Püttner; H. Iwayama; E. Shigemasa; S. Carniato; Maria Novella Piancastelli; Marc Simon

Creation of deep core holes leads to extensive nuclear dynamics on a few femtosecond timescale despite the very short (τ ≤ 1 fs) lifetime of such states. This is because the 1st steps of the relaxation processes (i.e. both radiative and non-radiative decays) generate intermediate states with one and multiple holes in core orbitals. As an example, ultrafast dissociation is observed in three well-distinguishable LVV Auger decay channels for HCl following Cl1s→σ* excitation.


Physical Review Letters | 2016

Double-Core-Hole States in Neon: Lifetime, Post-Collision Interaction, and Spectral Assignment.

G. Goldsztejn; T. Marchenko; R. Püttner; L. Journel; Renaud Guillemin; S. Carniato; P. Selles; O. Travnikova; Denis Céolin; A. F. Lago; Raimund Feifel; P. Lablanquie; M. N. Piancastelli; F. Penent; Marc Simon

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R. Püttner

Free University of Berlin

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