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1550 nm VCSEL-based 10 Gb/s optical NRZ signal transmission over 20 km SMF using RSOA gain saturation

机译:使用RSOA增益饱和在20 km SMF上基于1550 nm VCSEL的10 Gb / s光学NRZ信号传输

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摘要

A method for a 1550 nm vertical cavity surface emitting laser (VCSEL)-based 10 Gb/s optical non-return to zero (NRZ) signal transmission over 20 km single mode fiber (SMF) using reflective semiconductor optical laser amplifier (RSOA) gain saturation is presented. The optical signal distortion of 10 Gb/s optical NRZ signals caused by the inherent frequency chirp of the VCSEL and the chromatic dispersion of SMF were investigated through numerical simulations and experiments. For 20 km transmission over SMF, VCSEL-based 10 Gb/s optical NRZ signals were severely distorted and '1' bit signals had different amplitudes with respect to their bit patterns. The gain saturation of RSOA can equalize the different amplitudes of '1' bit signals and can mitigate the optical pulse distortion after 20 km transmission over SMF. The experimental results showed that VCSEL-based 10 Gb/s optical NRZ signals can achieve a bit error rate (BER) of 10(-9) with a 2.4 dB dispersion penalty for 20 km transmission of SMF with RSOA gain saturation. (C) 2017 Elsevier Inc. All rights reserved.
机译:一种使用反射半导体光学激光放大器(RSOA)增益在20 km单模光纤(SMF)上进行基于1550 nm垂直腔表面发射激光器(VCSEL)的10 Gb / s光学不归零(NRZ)信号传输的方法出现饱和。通过数值模拟和实验研究了VCSEL的固有频率chi和SMF的色散引起的10 Gb / s NRZ光信号的光信号失真。对于通过SMF进行的20 km传输,基于VCSEL的10 Gb / s光学NRZ信号严重失真,“ 1”位信号的位模式幅度不同。 RSOA的增益饱和可以均衡“ 1”比特信号的不同幅度,并且可以减轻在SMF上传输20 km后的光脉冲失真。实验结果表明,基于VCSEL的10 Gb / s光学NRZ信号可实现10(-9)的误码率(BER),对于具有RSOA增益饱和的20 km SMF传输,色散损失为2.4 dB。 (C)2017 Elsevier Inc.保留所有权利。

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