Attosecond light field synthesis

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 synthes...

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Main Authors: Husain Alqattan, Dandan Hui, Vladimir Pervak, Mohammed Th. Hassan
Format: Article
Language:English
Published: AIP Publishing LLC 2022-04-01
Series:APL Photonics
Online Access:http://dx.doi.org/10.1063/5.0082958
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author Husain Alqattan
Dandan Hui
Vladimir Pervak
Mohammed Th. Hassan
author_facet Husain Alqattan
Dandan Hui
Vladimir Pervak
Mohammed Th. Hassan
author_sort Husain Alqattan
collection DOAJ
description 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 to deep-ultraviolet 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.
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spelling doaj.art-aacef27c97834c43a1a4d92c059d05d12022-12-22T02:23:11ZengAIP Publishing LLCAPL Photonics2378-09672022-04-0174041301041301-810.1063/5.0082958Attosecond light field synthesisHusain Alqattan0Dandan Hui1Vladimir Pervak2Mohammed Th. Hassan3Department of Physics, University of Arizona, Tucson, Arizona 85721, USADepartment of Physics, University of Arizona, Tucson, Arizona 85721, USALudwig-Maximilians-Universität München, Am Coulombwall 1, 85748 Garching, GermanyDepartment of Physics, University of Arizona, Tucson, Arizona 85721, USAThe 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 to deep-ultraviolet 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.http://dx.doi.org/10.1063/5.0082958
spellingShingle Husain Alqattan
Dandan Hui
Vladimir Pervak
Mohammed Th. Hassan
Attosecond light field synthesis
APL Photonics
title Attosecond light field synthesis
title_full Attosecond light field synthesis
title_fullStr Attosecond light field synthesis
title_full_unstemmed Attosecond light field synthesis
title_short Attosecond light field synthesis
title_sort attosecond light field synthesis
url http://dx.doi.org/10.1063/5.0082958
work_keys_str_mv AT husainalqattan attosecondlightfieldsynthesis
AT dandanhui attosecondlightfieldsynthesis
AT vladimirpervak attosecondlightfieldsynthesis
AT mohammedthhassan attosecondlightfieldsynthesis