Nonlinear Optical Microscopy of Semiconductor Metal-Nanocavities

Fuente: arXiv
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Main Authors: Varghese, Riya, Annurakshita, Shambhavee, Tamashevich, Yaraslau, Chellu, Abhiroop, Bej, Subhajit, Rekola, Heikki, Lyytikainen, Jari, Wahl, Hanna, Schildt, Matias, Panahpour, Ali, Niemi, Tapio, Ornigotti, Marco, Karvinen, Petri, Guina, Mircea, Hakkarainen, Teemu, Huttunen, Mikko J.
Format: Preprint
Published: 2025
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author Varghese, Riya
Annurakshita, Shambhavee
Tamashevich, Yaraslau
Chellu, Abhiroop
Bej, Subhajit
Rekola, Heikki
Lyytikainen, Jari
Wahl, Hanna
Schildt, Matias
Panahpour, Ali
Niemi, Tapio
Ornigotti, Marco
Karvinen, Petri
Guina, Mircea
Hakkarainen, Teemu
Huttunen, Mikko J.
author_facet Varghese, Riya
Annurakshita, Shambhavee
Tamashevich, Yaraslau
Chellu, Abhiroop
Bej, Subhajit
Rekola, Heikki
Lyytikainen, Jari
Wahl, Hanna
Schildt, Matias
Panahpour, Ali
Niemi, Tapio
Ornigotti, Marco
Karvinen, Petri
Guina, Mircea
Hakkarainen, Teemu
Huttunen, Mikko J.
contents We use second and third harmonic generation microscopy to investigate the nonlinear optical response of GaAs nanocavities embedded in a gold film and compare them to bare GaAs nanocavities. Our results reveal that the surrounding metallic environment significantly modifies both the intensity and spatial distribution of the nonlinear signals. When the harmonic wavelength is spectrally detuned from the nanocavity resonance, the effects due to the metallic environment start suppressing the SHG contrast. Numerical simulations confirm that at a 1060 nm pump wavelength, the SHG produced at 530 nm is suppressed due to the dominant plasmonic response of gold. Meanwhile, the THG produced at 353 nm, which coincides with the nanocavity resonance, enables high contrast imaging. Furthermore, by shifting the pump to 710 nm, aligning SHG at 356 nm with the nanocavity resonance, we recover strong SHG contrast, demonstrating a pathway to enhanced imaging of metal-semiconductor heterostructures.
format Preprint
id arxiv_https___arxiv_org_abs_2504_03402
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle Nonlinear Optical Microscopy of Semiconductor Metal-Nanocavities
Varghese, Riya
Annurakshita, Shambhavee
Tamashevich, Yaraslau
Chellu, Abhiroop
Bej, Subhajit
Rekola, Heikki
Lyytikainen, Jari
Wahl, Hanna
Schildt, Matias
Panahpour, Ali
Niemi, Tapio
Ornigotti, Marco
Karvinen, Petri
Guina, Mircea
Hakkarainen, Teemu
Huttunen, Mikko J.
Optics
We use second and third harmonic generation microscopy to investigate the nonlinear optical response of GaAs nanocavities embedded in a gold film and compare them to bare GaAs nanocavities. Our results reveal that the surrounding metallic environment significantly modifies both the intensity and spatial distribution of the nonlinear signals. When the harmonic wavelength is spectrally detuned from the nanocavity resonance, the effects due to the metallic environment start suppressing the SHG contrast. Numerical simulations confirm that at a 1060 nm pump wavelength, the SHG produced at 530 nm is suppressed due to the dominant plasmonic response of gold. Meanwhile, the THG produced at 353 nm, which coincides with the nanocavity resonance, enables high contrast imaging. Furthermore, by shifting the pump to 710 nm, aligning SHG at 356 nm with the nanocavity resonance, we recover strong SHG contrast, demonstrating a pathway to enhanced imaging of metal-semiconductor heterostructures.
title Nonlinear Optical Microscopy of Semiconductor Metal-Nanocavities
topic Optics
url https://arxiv.org/abs/2504.03402