English

FEL stochastic spectroscopy revealing silicon bond softening dynamics

Materials Science 2023-06-28 v1 Instrumentation and Detectors

Abstract

Time-resolved X-ray Emission/Absorption Spectroscopy (Tr-XES/XAS) is an informative experimental tool sensitive to electronic dynamics in materials, widely exploited in diverse research fields. Typically, Tr-XES/XAS requires X-ray pulses with both a narrow bandwidth and sub-picosecond pulse duration, a combination that in principle finds its optimum with Fourier transform-limited pulses. In this work, we explore an alternative xperimental approach, capable of simultaneously retrieving information about unoccupied (XAS) and occupied (XES) states from the stochastic fluctuations of broadband extreme ultraviolet pulses of a free-electron laser. We used this method, in combination with singular value decomposition and Tikhonov regularization procedures, to determine the XAS/XES response from a crystalline silicon sample at the L2,3-edge, with an energy resolution of a few tens of meV. Finally, we combined this spectroscopic method with a pump-probe approach to measure structural and electronic dynamics of a silicon membrane. Tr-XAS/XES data obtained after photoexcitation with an optical laser pulse at 390 nm allowed us to observe perturbations of the band structure, which are compatible with the formation of the predicted precursor state of a non-thermal solid-liquid phase transition associated with a bond softening phenomenon.

Keywords

Cite

@article{arxiv.2305.05258,
  title  = {FEL stochastic spectroscopy revealing silicon bond softening dynamics},
  author = {Dario De Angelis and Emiliano Principi and Filippo Bencivenga and Daniele Fausti and Laura Foglia and Yishay Klein and Michele Manfredda and Riccardo Mincigrucci and Angela Montanaro and Emanuele Pedersoli and Jacopo Stefano Pelli Cresi and Giovanni Perosa and Kevin C. Prince and Elia Razzoli and Sharon Shwartz and Alberto Simoncig and Simone Spampinati and Cristian Svetina and Jakub Szlachetko and Alok Tripathi and Ivan A. Vartanyants and Marco Zangrando and Flavio Capotondi},
  journal= {arXiv preprint arXiv:2305.05258},
  year   = {2023}
}