Single-Mode 940 nm VCSELs With Narrow Divergence Angles and High-Power Performances for Fiber and Free-Space Optical Communications
Using the Zn-diffusion and oxide-relief techniques with the optimized aperture sizes, we demonstrate a novel single-mode 940 nm vertical-cavity surface-emitting laser (VCSEL) with high brightness performance. The highly single-mode (SM) output optical spectra (SMSR>50 dB) can be sustained und...
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doaj-dc7f491040624bfab705b1bc9c4101192021-03-30T02:59:04ZengIEEEIEEE Access2169-35362020-01-018720957210110.1109/ACCESS.2020.29878189066926Single-Mode 940 nm VCSELs With Narrow Divergence Angles and High-Power Performances for Fiber and Free-Space Optical CommunicationsZuhaib Khan0Nikolay Ledentsov1Lukasz Chorchos2Jie-Chen Shih3Yung-Hao Chang4Nikolay N. Ledentsov5Jin-Wei Shi6https://orcid.org/0000-0003-0139-514XDepartment of Electrical Engineering, National Central University, Jungli, TaiwanVI Systems GmbH, Berlin, GermanyVI Systems GmbH, Berlin, GermanyDepartment of Electrical Engineering, National Central University, Jungli, TaiwanDepartment of Electrical Engineering, National Central University, Jungli, TaiwanVI Systems GmbH, Berlin, GermanyDepartment of Electrical Engineering, National Central University, Jungli, TaiwanUsing the Zn-diffusion and oxide-relief techniques with the optimized aperture sizes, we demonstrate a novel single-mode 940 nm vertical-cavity surface-emitting laser (VCSEL) with high brightness performance. The highly single-mode (SM) output optical spectra (SMSR>50 dB) can be sustained under a full range of bias currents and from room temperature (RT) to 85°C operation. Under RT operation, the maximum SM power can be as high as 7.1 mW with a moderate threshold current ($\text{I}_{\mathrm {th}}$ : 1.1mA) and narrow divergence angles in the far-field pattern (FWHM: 5°, 1/e<sup>2</sup>: 7-8°). Furthermore, the maximum 3-dB E-O modulation bandwidth of this high-power SM VCSEL can reach 15 GHz without the low-frequency roll-off induced by spatial hole burning effect. By using this novel device as the transmitter, we can achieve 25 Gbit/sec error-free (bit-error-ratio (BER) $ <; 1\times 10^{-12}$ ) transmission over a 400 meter OM5 fiber without using any signal processing technique. This novel high-speed and high-brightness SM 940 nm VCSEL can serve as a light source in single-mode fiber for medium-reach (>0.3 km) data communications as well as in free-space optical communication.https://ieeexplore.ieee.org/document/9066926/Vertical cavity surface emitting lasersfiber opticsdata communication |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Zuhaib Khan Nikolay Ledentsov Lukasz Chorchos Jie-Chen Shih Yung-Hao Chang Nikolay N. Ledentsov Jin-Wei Shi |
spellingShingle |
Zuhaib Khan Nikolay Ledentsov Lukasz Chorchos Jie-Chen Shih Yung-Hao Chang Nikolay N. Ledentsov Jin-Wei Shi Single-Mode 940 nm VCSELs With Narrow Divergence Angles and High-Power Performances for Fiber and Free-Space Optical Communications IEEE Access Vertical cavity surface emitting lasers fiber optics data communication |
author_facet |
Zuhaib Khan Nikolay Ledentsov Lukasz Chorchos Jie-Chen Shih Yung-Hao Chang Nikolay N. Ledentsov Jin-Wei Shi |
author_sort |
Zuhaib Khan |
title |
Single-Mode 940 nm VCSELs With Narrow Divergence Angles and High-Power Performances for Fiber and Free-Space Optical Communications |
title_short |
Single-Mode 940 nm VCSELs With Narrow Divergence Angles and High-Power Performances for Fiber and Free-Space Optical Communications |
title_full |
Single-Mode 940 nm VCSELs With Narrow Divergence Angles and High-Power Performances for Fiber and Free-Space Optical Communications |
title_fullStr |
Single-Mode 940 nm VCSELs With Narrow Divergence Angles and High-Power Performances for Fiber and Free-Space Optical Communications |
title_full_unstemmed |
Single-Mode 940 nm VCSELs With Narrow Divergence Angles and High-Power Performances for Fiber and Free-Space Optical Communications |
title_sort |
single-mode 940 nm vcsels with narrow divergence angles and high-power performances for fiber and free-space optical communications |
publisher |
IEEE |
series |
IEEE Access |
issn |
2169-3536 |
publishDate |
2020-01-01 |
description |
Using the Zn-diffusion and oxide-relief techniques with the optimized aperture sizes, we demonstrate a novel single-mode 940 nm vertical-cavity surface-emitting laser (VCSEL) with high brightness performance. The highly single-mode (SM) output optical spectra (SMSR>50 dB) can be sustained under a full range of bias currents and from room temperature (RT) to 85°C operation. Under RT operation, the maximum SM power can be as high as 7.1 mW with a moderate threshold current ($\text{I}_{\mathrm {th}}$ : 1.1mA) and narrow divergence angles in the far-field pattern (FWHM: 5°, 1/e<sup>2</sup>: 7-8°). Furthermore, the maximum 3-dB E-O modulation bandwidth of this high-power SM VCSEL can reach 15 GHz without the low-frequency roll-off induced by spatial hole burning effect. By using this novel device as the transmitter, we can achieve 25 Gbit/sec error-free (bit-error-ratio (BER) $ <; 1\times 10^{-12}$ ) transmission over a 400 meter OM5 fiber without using any signal processing technique. This novel high-speed and high-brightness SM 940 nm VCSEL can serve as a light source in single-mode fiber for medium-reach (>0.3 km) data communications as well as in free-space optical communication. |
topic |
Vertical cavity surface emitting lasers fiber optics data communication |
url |
https://ieeexplore.ieee.org/document/9066926/ |
work_keys_str_mv |
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