Second harmonic generation at a time-varying interface

Fuente: arXiv
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Main Authors: Tirole, Romain, Vezzoli, Stefano, Saxena, Dhruv, Yang, Shu, Raziman, T. V., Galiffi, Emanuele, Maier, Stefan A., Pendry, John B., Sapienza, Riccardo
Format: Preprint
Published: 2024
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author Tirole, Romain
Vezzoli, Stefano
Saxena, Dhruv
Yang, Shu
Raziman, T. V.
Galiffi, Emanuele
Maier, Stefan A.
Pendry, John B.
Sapienza, Riccardo
author_facet Tirole, Romain
Vezzoli, Stefano
Saxena, Dhruv
Yang, Shu
Raziman, T. V.
Galiffi, Emanuele
Maier, Stefan A.
Pendry, John B.
Sapienza, Riccardo
contents Time-varying metamaterials rely on large and fast changes of the linear permittivity. Beyond the linear terms, however, the effect of a non-perturbative modulation of the medium on harmonic generation and the associated nonlinear susceptibilities remains largely unexplored. In this work, we study second harmonic generation at an optically pumped time-varying interface between air and a 310 nm Indium Tin Oxide film. We observe an enhancement of the modulation contrast at the second harmonic wavelength, up to 93% for a pump intensity of 100 GW/cm$^2$, leading to large frequency broadening and shift. We demonstrate that, in addition to the quadratic dependence on the fundamental field, a significant contribution to the enhancement comes from the temporal modulation of the second order nonlinear susceptibility, whose relative change is double that of the linear term. Moreover, the spectra resulting from single and double-slit time diffraction show significantly enhanced frequency shift, broadening and modulation depth, when compared to the infrared fundamental beam, and could be exploited for optical computing and sensing. Enhanced time-varying effects on the harmonic signal extends the application of materials to the visible range and calls for further theoretical exploration of non-perturbative nonlinear optics.
format Preprint
id arxiv_https___arxiv_org_abs_2401_05536
institution arXiv
publishDate 2024
record_format arxiv
spellingShingle Second harmonic generation at a time-varying interface
Tirole, Romain
Vezzoli, Stefano
Saxena, Dhruv
Yang, Shu
Raziman, T. V.
Galiffi, Emanuele
Maier, Stefan A.
Pendry, John B.
Sapienza, Riccardo
Optics
Time-varying metamaterials rely on large and fast changes of the linear permittivity. Beyond the linear terms, however, the effect of a non-perturbative modulation of the medium on harmonic generation and the associated nonlinear susceptibilities remains largely unexplored. In this work, we study second harmonic generation at an optically pumped time-varying interface between air and a 310 nm Indium Tin Oxide film. We observe an enhancement of the modulation contrast at the second harmonic wavelength, up to 93% for a pump intensity of 100 GW/cm$^2$, leading to large frequency broadening and shift. We demonstrate that, in addition to the quadratic dependence on the fundamental field, a significant contribution to the enhancement comes from the temporal modulation of the second order nonlinear susceptibility, whose relative change is double that of the linear term. Moreover, the spectra resulting from single and double-slit time diffraction show significantly enhanced frequency shift, broadening and modulation depth, when compared to the infrared fundamental beam, and could be exploited for optical computing and sensing. Enhanced time-varying effects on the harmonic signal extends the application of materials to the visible range and calls for further theoretical exploration of non-perturbative nonlinear optics.
title Second harmonic generation at a time-varying interface
topic Optics
url https://arxiv.org/abs/2401.05536