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Transient absorption of warm dense matter created by an X-ray free-electron laser

Physics

Transient absorption of warm dense matter created by an X-ray free-electron laser

L. Mercadier, A. Benediktovitch, et al.

Explore the intriguing properties of warm dense matter formed from copper using ultrafast X-ray free-electron laser technology. This groundbreaking research by authors such as Laurent Mercadier and Andrei Benediktovitch delves into absorption spectroscopy, revealing vital shifts in absorption mechanisms that pave the way for future applications in X-ray pulse shaping.

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~3 min • Beginner • English
Abstract
Warm dense matter is at the boundary between a plasma and a condensed phase and plays a role in astrophysics, planetary science and inertial confinement fusion research. However, its electronic structure and ionic structure upon irradiation with strong laser pulses remain poorly understood. Here, we use an intense and ultrafast X-ray free-electron laser pulse to simultaneously create and characterize warm dense copper using L-edge X-ray absorption spectroscopy over a large irradiation intensity range. Below a pulse intensity of 10^15 W cm−2, an absorption peak below the L edge appears, originating from transient depletion of the 3d band. This peak shifts to lower energy with increasing intensity, indicating the movement of the 3d band upon strong X-ray excitation. At higher intensities, substantial ionization and collisions lead to the transition from reverse saturable absorption to saturable absorption of the X-ray free-electron laser pulse, two nonlinear effects that hold promise for X-ray pulse-shaping. We employ theoretical calculations that combine a model based on kinetic Boltzmann equations with finite-temperature real-space density-functional theory to interpret these observations. The results can be used to benchmark non-equilibrium models of electronic structure in warm dense matter.
Publisher
Nature Physics
Published On
Oct 01, 2024
Authors
Laurent Mercadier, Andrei Benediktovitch, Špela Krušič, Joshua J. Kas, Justine Schlappa, Marcus Agåker, Robert Carley, Giuseppe Fazio, Natalia Gerasimova, Young Yong Kim, Loïc Le Guyader, Giuseppe Mercurio, Sergii Parchenko, John J. Rehr, Jan-Erik Rubensson, Svitozar Serkez, Michal Stransky, Martin Teichmann, Zhong Yin, Matjaž Žitnik, Andreas Scherz, Beata Ziaja, Nina Rohringer
Tags
warm dense matter
X-ray free-electron laser
copper absorption
reverse saturable absorption
saturable absorption
ionization
spectroscopy
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