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Main Authors: Kervazo, R, Congar, A, Perin, G, Lablonde, L, Butté, R, Grandjean, N, Bodiou, L, Charrier, J, Trebaol, S
Format: Preprint
Published: 2024
Subjects:
Online Access:https://arxiv.org/abs/2405.15462
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author Kervazo, R
Congar, A
Perin, G
Lablonde, L
Butté, R
Grandjean, N
Bodiou, L
Charrier, J
Trebaol, S
author_facet Kervazo, R
Congar, A
Perin, G
Lablonde, L
Butté, R
Grandjean, N
Bodiou, L
Charrier, J
Trebaol, S
contents We present a compact InGaN fiber Bragg grating (FBG) semiconductor laser diode operating below 400 nm in the single-mode emission regime. This compact coherent laser source exhibits an intrinsic linewidth of 14 kHz in the near-UV range and a side-mode suppression ratio reaching up to 40 dB accompanied by a mW-level output power. Furthermore, the properties of the FBG, including its central wavelength, bandwidth, and reflectivity, can be readily customized to fulfill specific requirements. As a result, the small footprint design of this laser is compatible with integration into a standard butterfly package to ease the lab-to-market technology transfer. The combination of low frequency noise and fibered output signal positions these FBG laser systems as strong candidates for hybridization with integrated photonic platforms tailored for quantum information processing and metrology.
format Preprint
id arxiv_https___arxiv_org_abs_2405_15462
institution arXiv
publishDate 2024
record_format arxiv
spellingShingle Sub-20 kHz low frequency noise near ultraviolet miniature external cavity laser diode
Kervazo, R
Congar, A
Perin, G
Lablonde, L
Butté, R
Grandjean, N
Bodiou, L
Charrier, J
Trebaol, S
Optics
We present a compact InGaN fiber Bragg grating (FBG) semiconductor laser diode operating below 400 nm in the single-mode emission regime. This compact coherent laser source exhibits an intrinsic linewidth of 14 kHz in the near-UV range and a side-mode suppression ratio reaching up to 40 dB accompanied by a mW-level output power. Furthermore, the properties of the FBG, including its central wavelength, bandwidth, and reflectivity, can be readily customized to fulfill specific requirements. As a result, the small footprint design of this laser is compatible with integration into a standard butterfly package to ease the lab-to-market technology transfer. The combination of low frequency noise and fibered output signal positions these FBG laser systems as strong candidates for hybridization with integrated photonic platforms tailored for quantum information processing and metrology.
title Sub-20 kHz low frequency noise near ultraviolet miniature external cavity laser diode
topic Optics
url https://arxiv.org/abs/2405.15462