Extreme-ultraviolet spatiotemporal vortices via high harmonic generation

Fuente: arXiv
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Main Authors: Martin-Hernandez, Rodrigo, Gui, Guan, Plaja, Luis, Kapteyn, Henry K., Murnane, Margaret M., Liao, Chen-Ting, Porras, Miguel A., Hernandez-Garcia, Carlos
Format: Preprint
Published: 2024
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author Martin-Hernandez, Rodrigo
Gui, Guan
Plaja, Luis
Kapteyn, Henry K.
Murnane, Margaret M.
Liao, Chen-Ting
Porras, Miguel A.
Hernandez-Garcia, Carlos
author_facet Martin-Hernandez, Rodrigo
Gui, Guan
Plaja, Luis
Kapteyn, Henry K.
Murnane, Margaret M.
Liao, Chen-Ting
Porras, Miguel A.
Hernandez-Garcia, Carlos
contents Spatiotemporal optical vortices (STOV) are space-time structured light pulses with a unique topology that couples spatial and temporal domains and carry transverse orbital angular momentum (OAM). Up to now, their generation has been limited to the visible and infrared regions of the spectrum. During the last decade, it was shown that through the process of high-order harmonic generation (HHG) it is possible to up-convert spatial optical vortices that carry longitudinal OAM from the near-infrared into the extreme-ultraviolet (EUV), thereby producing vortices with distinct femtosecond and attosecond structure. In this work we demonstrate theoretically and experimentally the generation of EUV spatiotemporal and spatiospectral vortices using near infrared STOV driving laser pulses. We use analytical expressions for focused STOVs to perform macroscopic calculations of HHG that are directly compared to the experimental results. As STOV beams are not eigenmodes of propagation, we characterize the highly-charged EUV STOVs both in the near and far fields, to show that they represent conjugated spatiotemporal and spatiospectral vortex pairs. Our work provides high-frequency light beams topologically coupled at the nanometer/attosecond scales domains with transverse OAM, that could be suitable to explore electronic dynamics in magnetic materials, chiral media, and nanostructures.
format Preprint
id arxiv_https___arxiv_org_abs_2412_01716
institution arXiv
publishDate 2024
record_format arxiv
spellingShingle Extreme-ultraviolet spatiotemporal vortices via high harmonic generation
Martin-Hernandez, Rodrigo
Gui, Guan
Plaja, Luis
Kapteyn, Henry K.
Murnane, Margaret M.
Liao, Chen-Ting
Porras, Miguel A.
Hernandez-Garcia, Carlos
Optics
Spatiotemporal optical vortices (STOV) are space-time structured light pulses with a unique topology that couples spatial and temporal domains and carry transverse orbital angular momentum (OAM). Up to now, their generation has been limited to the visible and infrared regions of the spectrum. During the last decade, it was shown that through the process of high-order harmonic generation (HHG) it is possible to up-convert spatial optical vortices that carry longitudinal OAM from the near-infrared into the extreme-ultraviolet (EUV), thereby producing vortices with distinct femtosecond and attosecond structure. In this work we demonstrate theoretically and experimentally the generation of EUV spatiotemporal and spatiospectral vortices using near infrared STOV driving laser pulses. We use analytical expressions for focused STOVs to perform macroscopic calculations of HHG that are directly compared to the experimental results. As STOV beams are not eigenmodes of propagation, we characterize the highly-charged EUV STOVs both in the near and far fields, to show that they represent conjugated spatiotemporal and spatiospectral vortex pairs. Our work provides high-frequency light beams topologically coupled at the nanometer/attosecond scales domains with transverse OAM, that could be suitable to explore electronic dynamics in magnetic materials, chiral media, and nanostructures.
title Extreme-ultraviolet spatiotemporal vortices via high harmonic generation
topic Optics
url https://arxiv.org/abs/2412.01716