Long wavelength (λ > 13 μm) quantum cascade laser based on diagonal transition and three-phonon-resonance design

An InP-based quantum cascade laser structure emitting at a wavelength of 13.6 μm is proposed and demonstrated. The active region is based on a diagonal transition and three-phonon-resonance design. A 5 mm long, 30 μm wide high-reflection coated device with a double channel ridge waveguide structure...

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Main Authors: Jin, Yuhao, Li, Jinghao, Chua, Yun Da, Tan, Kian Hua, Wicaksono, Satrio, Sirtori, Carlo, Yoon, Soon Fatt, Wang, Qi Jie
Other Authors: School of Electrical and Electronic Engineering
Format: Article
Language:English
Published: 2021
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Online Access:https://hdl.handle.net/10356/153565
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Institution: Nanyang Technological University
Language: English
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spelling sg-ntu-dr.10356-1535652023-02-28T19:56:00Z Long wavelength (λ > 13 μm) quantum cascade laser based on diagonal transition and three-phonon-resonance design Jin, Yuhao Li, Jinghao Chua, Yun Da Tan, Kian Hua Wicaksono, Satrio Sirtori, Carlo Yoon, Soon Fatt Wang, Qi Jie School of Electrical and Electronic Engineering School of Physical and Mathematical Sciences Centre for OptoElectronics and Biophotonics (OPTIMUS) Centre for Disruptive Photonic Technologies (CDPT) Engineering::Electrical and electronic engineering III-V Semiconductors Indium Phosphide An InP-based quantum cascade laser structure emitting at a wavelength of 13.6 μm is proposed and demonstrated. The active region is based on a diagonal transition and three-phonon-resonance design. A 5 mm long, 30 μm wide high-reflection coated device with a double channel ridge waveguide structure has shown a threshold current density of 3.0 kA/cm2, a dynamic range of 4.4 kA/cm2, a peak output power close to 1 W, and an average optical power up to 11.7 mW at 3% duty cycle, at 293 K. The laser shows a characteristic temperature T0 of 314 K and T1 of 336 K over a temperature range from 283 to 313 K. National Research Foundation (NRF) Published version Part of this work was conducted within the Delta-NTU Corporate Lab for Cyber-Physical Systems with funding support from Delta Electronics Inc. and the National Research Foundation (NRF) Singapore under the Corp Lab@University Scheme. This research was also supported partially by National Research Foundation Singapore programme (Nos. NRF-CRP18-2017-02 and NRF-CRP19-2017-01). 2021-12-07T08:25:28Z 2021-12-07T08:25:28Z 2021 Journal Article Jin, Y., Li, J., Chua, Y. D., Tan, K. H., Wicaksono, S., Sirtori, C., Yoon, S. F. & Wang, Q. J. (2021). Long wavelength (λ > 13 μm) quantum cascade laser based on diagonal transition and three-phonon-resonance design. Applied Physics Letters, 119(13), 131105-. https://dx.doi.org/10.1063/5.0066474 0003-6951 https://hdl.handle.net/10356/153565 10.1063/5.0066474 2-s2.0-85116094685 13 119 131105 en NRF-CRP18-2017-02 NRF-CRP19-2017-01 Applied Physics Letters © 2021 Author(s). All rights reserved. This paper was published by AIP Publishing in Applied Physics Letters and is made available with permission of Author(s). application/pdf
institution Nanyang Technological University
building NTU Library
continent Asia
country Singapore
Singapore
content_provider NTU Library
collection DR-NTU
language English
topic Engineering::Electrical and electronic engineering
III-V Semiconductors
Indium Phosphide
spellingShingle Engineering::Electrical and electronic engineering
III-V Semiconductors
Indium Phosphide
Jin, Yuhao
Li, Jinghao
Chua, Yun Da
Tan, Kian Hua
Wicaksono, Satrio
Sirtori, Carlo
Yoon, Soon Fatt
Wang, Qi Jie
Long wavelength (λ > 13 μm) quantum cascade laser based on diagonal transition and three-phonon-resonance design
description An InP-based quantum cascade laser structure emitting at a wavelength of 13.6 μm is proposed and demonstrated. The active region is based on a diagonal transition and three-phonon-resonance design. A 5 mm long, 30 μm wide high-reflection coated device with a double channel ridge waveguide structure has shown a threshold current density of 3.0 kA/cm2, a dynamic range of 4.4 kA/cm2, a peak output power close to 1 W, and an average optical power up to 11.7 mW at 3% duty cycle, at 293 K. The laser shows a characteristic temperature T0 of 314 K and T1 of 336 K over a temperature range from 283 to 313 K.
author2 School of Electrical and Electronic Engineering
author_facet School of Electrical and Electronic Engineering
Jin, Yuhao
Li, Jinghao
Chua, Yun Da
Tan, Kian Hua
Wicaksono, Satrio
Sirtori, Carlo
Yoon, Soon Fatt
Wang, Qi Jie
format Article
author Jin, Yuhao
Li, Jinghao
Chua, Yun Da
Tan, Kian Hua
Wicaksono, Satrio
Sirtori, Carlo
Yoon, Soon Fatt
Wang, Qi Jie
author_sort Jin, Yuhao
title Long wavelength (λ > 13 μm) quantum cascade laser based on diagonal transition and three-phonon-resonance design
title_short Long wavelength (λ > 13 μm) quantum cascade laser based on diagonal transition and three-phonon-resonance design
title_full Long wavelength (λ > 13 μm) quantum cascade laser based on diagonal transition and three-phonon-resonance design
title_fullStr Long wavelength (λ > 13 μm) quantum cascade laser based on diagonal transition and three-phonon-resonance design
title_full_unstemmed Long wavelength (λ > 13 μm) quantum cascade laser based on diagonal transition and three-phonon-resonance design
title_sort long wavelength (λ > 13 μm) quantum cascade laser based on diagonal transition and three-phonon-resonance design
publishDate 2021
url https://hdl.handle.net/10356/153565
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