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    Título
    Optical magnetic field enhancement using ultrafast azimuthally polarized laser beams and tailored metallic nanoantennas
    Autor(es)
    Martín Hernández, RodrigoUSAL authority ORCID
    Grünewald, Lorenz
    Sánchez-Tejerina, Luis
    Plaja Rustein, LuisUSAL authority ORCID
    Conejero Jarque, EnriqueUSAL authority ORCID
    Hernández García, CarlosUSAL authority ORCID
    Mai, Sebastian
    Palabras clave
    Azimuthally polarized beams
    High harmonic generation
    Molecular spectroscopy
    Optical fields
    Quantum key distribution
    Spatial light modulators
    Fecha de publicación
    2024-05
    Editor
    Óptica Publishing Group
    Citación
    Martín-Hernández, R., Grünewald, L., Sánchez-Tejerina, L., Plaja, L., Conejero Jarque, E., Hernández-García, C., & Mai, S. (2024). Optical magnetic field enhancement using ultrafast azimuthally polarized laser beams and tailored metallic nanoantennas. Photonics Research, 12(5), 1078-1092. https://doi.org/10.1364/PRJ.511916
    Resumen
    [EN]Structured light provides unique opportunities to spatially tailor the electromagnetic field of laser beams. These include the possibility of a sub-wavelength spatial separation of their electric and magnetic fields, which would allow isolating interactions of matter with pure magnetic (or electric) fields. This could be particularly interesting in molecular spectroscopy, as excitations due to electric and—usually very weak—magnetic transition dipole moments can be disentangled. In this work, we show that the use of tailored metallic nanoantennas drastically enhances the strength of the longitudinal magnetic field carried by an ultrafast azimuthally polarized beam (by a factor of ∼65), which is spatially separated from the electric field by the beam’s symmetry. Such enhancement is due to favorable phase-matching of the magnetic field induced by the electric current loops created in the antennas. Our particle-in-cell simulation results demonstrate that the interactions of moderately intense (∼1011 W/cm2) and ultrafast azimuthally polarized laser beams with conical, parabolic, Gaussian, or logarithmic metallic nanoantennas provide spatially isolated magnetic field pulses of several tens of Tesla
    URI
    https://hdl.handle.net/10366/159506
    DOI
    10.1364/PRJ.511916
    Versión del editor
    https://doi.org/10.1364/PRJ.511916
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