Background-free Tracking of Ultrafast Hole and Electron Dynamics with XUV Transient Grating Spectroscopy
Abstract
Extreme ultraviolet (XUV) transient absorption (TA) and transient reflectivity (TR) spectroscopies enable element-specific insights into attosecond-timescale processes in solids. XUV transient grating spectroscopy (TGS) is an emerging tool that combines the advantages of both absorption and reflectivity while offering intrinsically background-free detection. Here, we implement XUV-TGS by generating a transient grating in germanium solid using two few-cycle near-infrared pulses and probing it with an attosecond XUV pulse, produced via tabletop high-harmonic generation. The spectrally resolved, diffracted XUV pulses directly visualize the separate ultrashort decay times of both photoexcited electrons and holes, without the need for iterative deconvolution. By combining XUV-TA and -TG spectroscopy, we extract the evolution of the complex refractive index, \~n, without the need for Kramers-Kronig reconstruction, as required in XUV-TR, allowing us to extract the roots of the induced optical response. We find reflectivity changes of up to 34% via the real part of \~n, whereas changes in the imaginary part only result in a variation in reflectivity of around 0.5%.
Keywords
Cite
@article{arxiv.2602.09565,
title = {Background-free Tracking of Ultrafast Hole and Electron Dynamics with XUV Transient Grating Spectroscopy},
author = {Vincent Eggers and Rafael Quintero-Bermudez and Kevin Gulu Xiong and Stephen R. Leone},
journal= {arXiv preprint arXiv:2602.09565},
year = {2026}
}
Comments
Transient Grating; XUV; Germanium