Ultrafast X-ray spectroscopy allows studying light-matter interaction with an unprecedented temporal resolution, with the further advantage of being element-selective and oxidation- and spin-state specific. Here we will discuss the recent developments we implemented toward attosecond X-ray spectroscopy based on tabletop sources, namely a bright XUV source based on high-order harmonic generation in micro-channels and a new beamline for XUV transient absorption spectroscopy experiments up to a few hundred eV.

Bright Coherent XUV Generation in Microfluidic Glass Devices for Ultrafast X-ray Spectroscopy

Stagira, S.;
2024-01-01

Abstract

Ultrafast X-ray spectroscopy allows studying light-matter interaction with an unprecedented temporal resolution, with the further advantage of being element-selective and oxidation- and spin-state specific. Here we will discuss the recent developments we implemented toward attosecond X-ray spectroscopy based on tabletop sources, namely a bright XUV source based on high-order harmonic generation in micro-channels and a new beamline for XUV transient absorption spectroscopy experiments up to a few hundred eV.
2024
Springer Proceedings in Physics
9783031479373
9783031479380
Attosecond optics
Attosecond pulses
Laser micromachining
Microfluidic devices
Nonlinear optical processes
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11311/1287715
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