Stable attosecond electron bunches from a nanofiber driven by Laguerre-Gaussian lasers
Abstract
Generation of attosecond bunches of energetic electrons offers significant potential from ultrafast physics to novel radiation sources. However, it is still a great challenge to stably produce such electron beams with lasers, since the typical sub-femtosecond electron bunches from laser-plasma interactions either carry low beam charge, or propagate for only several tens of femtoseconds. Here we propose an all-optical scheme for generating dense attosecond electron bunches via the interaction of an intense Laguerre-Gaussian (LG) laser pulse with a nanofiber. The stable bunch train results from the unique field structure of a circularly polarized LG laser pulse, enabling each bunch to be phase-locked and accelerated forward with low divergence, high beam charge and large beam-angular-momentum. This paves the way for wide applications in various fields, e.g., ultrabrilliant attosecond x/-ray emission.
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Cite
@article{arxiv.1804.08846,
title = {Stable attosecond electron bunches from a nanofiber driven by Laguerre-Gaussian lasers},
author = {Li-Xiang Hu and Tong-Pu Yu and Zheng-Ming Sheng and Jorge Vieira and De-Bin Zou and Yan Yin and Paul McKenna and Fu-Qiu Shao},
journal= {arXiv preprint arXiv:1804.08846},
year = {2018}
}
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9 pages