Broadband Visible Wavelength Microcomb Generation In Silicon Nitride Microrings Through Air-Clad Dispersion Engineering

Fuente: arXiv
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Main Authors: Moille, Gregory, Westly, Daron, Shrestha, Rahul, Hoang, Khoi Tuan, Srinivasan, Kartik
Format: Preprint
Published: 2024
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_version_ 1866918017840971776
author Moille, Gregory
Westly, Daron
Shrestha, Rahul
Hoang, Khoi Tuan
Srinivasan, Kartik
author_facet Moille, Gregory
Westly, Daron
Shrestha, Rahul
Hoang, Khoi Tuan
Srinivasan, Kartik
contents The development of broadband microresonator frequency combs at visible wavelengths is pivotal for the advancement of compact and fieldable optical atomic clocks and spectroscopy systems. Yet, their realization necessitates resonators with anomalous dispersion, an arduous task due to the prevailing normal dispersion regime of materials within the visible spectrum. In this work, we evince that silicon nitride microring resonators with air cladding on top and sides -- a deviation from the frequently employed silica-embedded resonators -- allows for the direct generation of broadband microcombs in the visible range. We experimentally demonstrate combs pumped at 1060~nm (283~THz) that reach wavelengths as short as 680~nm (440 THz), and combs pumped at 780~nm (384 THz) that reach wavelengths as short as 630 nm (475 THz). We further show through simulations that microcombs extending to wavelengths as low as 461 nm (650 THz) should be accessible in this platform.
format Preprint
id arxiv_https___arxiv_org_abs_2404_01577
institution arXiv
publishDate 2024
record_format arxiv
spellingShingle Broadband Visible Wavelength Microcomb Generation In Silicon Nitride Microrings Through Air-Clad Dispersion Engineering
Moille, Gregory
Westly, Daron
Shrestha, Rahul
Hoang, Khoi Tuan
Srinivasan, Kartik
Optics
Applied Physics
The development of broadband microresonator frequency combs at visible wavelengths is pivotal for the advancement of compact and fieldable optical atomic clocks and spectroscopy systems. Yet, their realization necessitates resonators with anomalous dispersion, an arduous task due to the prevailing normal dispersion regime of materials within the visible spectrum. In this work, we evince that silicon nitride microring resonators with air cladding on top and sides -- a deviation from the frequently employed silica-embedded resonators -- allows for the direct generation of broadband microcombs in the visible range. We experimentally demonstrate combs pumped at 1060~nm (283~THz) that reach wavelengths as short as 680~nm (440 THz), and combs pumped at 780~nm (384 THz) that reach wavelengths as short as 630 nm (475 THz). We further show through simulations that microcombs extending to wavelengths as low as 461 nm (650 THz) should be accessible in this platform.
title Broadband Visible Wavelength Microcomb Generation In Silicon Nitride Microrings Through Air-Clad Dispersion Engineering
topic Optics
Applied Physics
url https://arxiv.org/abs/2404.01577