Attosecond light field synthesis for electron motion control

Fuente: arXiv
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Main Authors: Alqattan, Husain, Hui, Dandan, Pervak, Vladimir, Hassan, Mohammed Th.
Format: Preprint
Published: 2021
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author Alqattan, Husain
Hui, Dandan
Pervak, Vladimir
Hassan, Mohammed Th.
author_facet Alqattan, Husain
Hui, Dandan
Pervak, Vladimir
Hassan, Mohammed Th.
contents The advancement of the ultrafast pulse shaping and waveform synthesis allowed to coherently control the atomic and electronic motions in matter. The temporal resolution of the waveform synthesis is inversely proportional to the broadening of its spectrum. Here, we demonstrate the light field synthesis of high-power waveforms spanning two optical octaves, from near-infrared (NIR) to deep-ultraviolet (DUV) with attosecond resolution. Moreover, we utilized the all-optical field sampling metrology for on-demand tailoring of light field waveforms to control the electron motion in matter. The demonstrated synthesis of the light field and the electron motion control pave the way for switching the photo-induced current signal in dielectric nanocircuit and establishing ultrafast photonics operating beyond the petahertz speed.
format Preprint
id arxiv_https___arxiv_org_abs_2112_10700
institution arXiv
publishDate 2021
record_format arxiv
spellingShingle Attosecond light field synthesis for electron motion control
Alqattan, Husain
Hui, Dandan
Pervak, Vladimir
Hassan, Mohammed Th.
Optics
Atomic Physics
The advancement of the ultrafast pulse shaping and waveform synthesis allowed to coherently control the atomic and electronic motions in matter. The temporal resolution of the waveform synthesis is inversely proportional to the broadening of its spectrum. Here, we demonstrate the light field synthesis of high-power waveforms spanning two optical octaves, from near-infrared (NIR) to deep-ultraviolet (DUV) with attosecond resolution. Moreover, we utilized the all-optical field sampling metrology for on-demand tailoring of light field waveforms to control the electron motion in matter. The demonstrated synthesis of the light field and the electron motion control pave the way for switching the photo-induced current signal in dielectric nanocircuit and establishing ultrafast photonics operating beyond the petahertz speed.
title Attosecond light field synthesis for electron motion control
topic Optics
Atomic Physics
url https://arxiv.org/abs/2112.10700