Photo-Thermally Tunable Photon-Pair Generation in Dielectric Metasurfaces

Fuente: arXiv
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Main Authors: Karaman, Omer Can, Li, Hua, Dayi, Elif Nur, Galland, Christophe, Tagliabue, Giulia
Format: Preprint
Published: 2025
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_version_ 1866918476625477632
author Karaman, Omer Can
Li, Hua
Dayi, Elif Nur
Galland, Christophe
Tagliabue, Giulia
author_facet Karaman, Omer Can
Li, Hua
Dayi, Elif Nur
Galland, Christophe
Tagliabue, Giulia
contents Photon-pair sources based on spontaneous four-wave mixing (SFWM) in integrated photonics are often spectrally static. We demonstrate and model a fundamental thermo-optical mechanism that modulates photon-pair generation in amorphous silicon (a-Si) thin films and metasurfaces via SFWM. Femtosecond-pulsed excitation yields g2(0) higher than 400 in unpatterned a-Si, confirming high-purity nonclassical emission. Resonant a-Si metasurfaces produce photon pairs at rates exceeding 3.8 kHz under 0.6 mW pump power through Mie-type modes. Pump absorption induces localized heating that redshifts resonances, altering modal overlap and SFWM efficiency, leading to deviations from the quadratic power scaling expected in the undepleted regime. Coupled electromagnetic and heat-transfer simulations quantitatively reproduce these trends. Polarization-resolved measurements show nearly isotropic nonlinear responses, with 3 times higher third-order susceptibility of a-Si compared to poly-Si. This work positions a-Si as a bright, CMOS-compatible quantum photonics platform and identifies thermo-optical detuning as a key mechanism that should be considered-and potentially harnessed-in integrated photon-pair sources.
format Preprint
id arxiv_https___arxiv_org_abs_2508_19051
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle Photo-Thermally Tunable Photon-Pair Generation in Dielectric Metasurfaces
Karaman, Omer Can
Li, Hua
Dayi, Elif Nur
Galland, Christophe
Tagliabue, Giulia
Optics
Quantum Physics
Photon-pair sources based on spontaneous four-wave mixing (SFWM) in integrated photonics are often spectrally static. We demonstrate and model a fundamental thermo-optical mechanism that modulates photon-pair generation in amorphous silicon (a-Si) thin films and metasurfaces via SFWM. Femtosecond-pulsed excitation yields g2(0) higher than 400 in unpatterned a-Si, confirming high-purity nonclassical emission. Resonant a-Si metasurfaces produce photon pairs at rates exceeding 3.8 kHz under 0.6 mW pump power through Mie-type modes. Pump absorption induces localized heating that redshifts resonances, altering modal overlap and SFWM efficiency, leading to deviations from the quadratic power scaling expected in the undepleted regime. Coupled electromagnetic and heat-transfer simulations quantitatively reproduce these trends. Polarization-resolved measurements show nearly isotropic nonlinear responses, with 3 times higher third-order susceptibility of a-Si compared to poly-Si. This work positions a-Si as a bright, CMOS-compatible quantum photonics platform and identifies thermo-optical detuning as a key mechanism that should be considered-and potentially harnessed-in integrated photon-pair sources.
title Photo-Thermally Tunable Photon-Pair Generation in Dielectric Metasurfaces
topic Optics
Quantum Physics
url https://arxiv.org/abs/2508.19051