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Sub-MHz linewidth 780.24 nm distributed feedback laser for ⁸⁷Rb applications

Di Gaetano, E. , Watson, S. , McBrearty, E. , Sorel, M. and Paul, D.J. (2020) Sub-MHz linewidth 780.24 nm distributed feedback laser for ⁸⁷Rb applications. Optics Letters, 45(13), pp. 3529-3532. (doi: 10.1364/OL.394185)

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Abstract

A distributed feedback GaAs-based semiconductor laser with a laterally coupled grating is demonstrated at a wavelength of 780.24 nm with up to 60 mW power. A mode expander and aluminum-free active layers have been used to reduce the linewidth to 612 kHz while maintaining high output power. The laser demonstrates over 40 dB side-mode suppression ratio with >0.3nm of tuning suitable for atom cooling experiments with the D2 87Rb atomic transition. This laser has substantial potential to be integrated into miniaturized cold atom systems.

Item Type:Articles
Status:Published
Refereed:Yes
Glasgow Author(s) Enlighten ID:Sorel, Professor Marc and Watson, Dr Scott and McBrearty, Dr Euan and Di Gaetano, Dr Eugenio and Paul, Professor Douglas
Authors: Di Gaetano, E., Watson, S., McBrearty, E., Sorel, M., and Paul, D.J.
College/School:College of Science and Engineering > School of Engineering > Electronics and Nanoscale Engineering
Journal Name:Optics Letters
Publisher:Optical Society of America
ISSN:0146-9592
ISSN (Online):1539-4794
Published Online:24 June 2020
Copyright Holders:Copyright © 2020 Optical Society of America
First Published:First published in Optics Letters 45(13): 3529-3532
Publisher Policy:Reproduced under a Creative Commons License
Data DOI:10.5525/gla.researchdata.1021

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Project Code
Award No
Project Name
Principal Investigator
Funder's Name
Funder Ref
Lead Dept
UK Quantum Technology Hub for Sensors and Metrology (EPSRC)
Douglas Paul
EP/M013294/1
ENG - Electronics & Nanoscale Engineering
Engineering Quantum Technology Systems on a Silicon Platform
Douglas Paul
EP/N003225/1
ENG - Electronics & Nanoscale Engineering
Quantum Hub 2 - Birmingham - UK Quantum Technology Hub for Sensors and Timing
Douglas Paul
EP/T001046/1
P&S - Physics & Astronomy

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