DocumentCode :
20522
Title :
Very High Bit-Rate Distance Product Using High-Power Single-Mode 850-nm VCSEL With Discrete Multitone Modulation Formats Through OM4 Multimode Fiber
Author :
Lu, I.-C. ; Chia-Chien Wei ; Hsing-Yu Chen ; Kuan-Zhou Chen ; Cheng-Hsiang Huang ; Kai-Lun Chi ; Jin-Wei Shi ; Fan-I Lai ; Dan-Hua Hsieh ; Hao-Chung Kuo ; Wei Lin ; Shi-Wei Chiu ; Jyehong Chen
Author_Institution :
Dept. of Photonics, Nat. Chiao-Tung Univ., Hsinchu, Taiwan
Volume :
21
Issue :
6
fYear :
2015
fDate :
Nov.-Dec. 2015
Firstpage :
1
Lastpage :
9
Abstract :
In order to investigate the tradeoff between optical spectral width and modulation speed of 850-nm Zn-diffusion vertical-cavity surface-emitting laser (VCSEL) and its influence on the performance of discrete multitone (DMT) modulation, two kinds of high-speed VCSEL structures with different cavity lengths (λ/2 and 3λ/2) are studied. By shortening the cavity length to λ/2, allocating the oxide layer in the standing-wave peak, and performing a Zn-diffusion aperture in our VCSEL structure, stable dual mode in the output optical spectra across the full range of bias currents with good high-speed performance (~16-GHz bandwidth) can be achieved. Compared with its multimode reference, it shows far less roll-off with regard to the maximum data rate versus transmission distance over OM4 multimode fibers under forward error correction (FEC) threshold (BER <; 3.8 × 10-3). On the other hand, for the 3λ/2 VCSEL structure, by using the same Zn-diffusion conditions as those of dual-mode counterpart, highly single-mode operation (side-mode suppression ratio> 35 dB) with high available power can be achieved over the full range of bias currents. Although such device shows a smaller 3-dB electrical-to-optical bandwidth (12 versus 16 GHz) than that of the dual-mode one, it exhibits a superior transmission performance by use of DMT modulation format. A record high bit-rate distance product (107.6 Gb/s·km) at nearly 50-Gb/s transmission under FEC threshold (BER<; 3.8 × 10-3) through 2.2-km OM4 fibers has been successfully demonstrated by the use of single-mode VCSEL with optimized structures. In addition, error-free (BER<; 1 × 10-12) transmission at 20.3 Gb/s with bit-rate distance product of 44.66 Gb/s·km has also been demonstrated.
Keywords :
diffusion; error statistics; forward error correction; laser cavity resonators; laser modes; optical fibre dispersion; surface emitting lasers; zinc; OM4 multimode fiber; Zn; Zn-diffusion vertical-cavity surface-emitting laser; bit rate 50 Gbit/s; cavity length; discrete multitone modulation formats; distance 2.2 km; forward error correction threshold; high-power single-mode VCSEL; modulation speed; multimode reference; optical spectral width; single-mode operation; transmission performance; very high bit-rate distance product; wavelength 850 nm; Cavity resonators; High-speed optical techniques; Modulation; Optical fiber devices; Optical fibers; Vertical cavity surface emitting lasers; OFDM modulation; Semiconductor lasers; Vertical cavity surface emitting lasers; semiconductor lasers; vertical cavity surface emitting lasers;
fLanguage :
English
Journal_Title :
Selected Topics in Quantum Electronics, IEEE Journal of
Publisher :
ieee
ISSN :
1077-260X
Type :
jour
DOI :
10.1109/JSTQE.2015.2421324
Filename :
7083722
Link To Document :
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