Nonlinearity Effect on Multiwavelength fiber laser based on Sagnac loop mirror interferometer

A. Sulaiman, Nur Maizatul Nadia Najamhuri, Muhd Amirul Hafizi Sukor, A. Ismail, F. Abdullah, M. Z. Jamaludin
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引用次数: 4

Abstract

This paper demonstrates a multiwavelength fiber laser (MWFL) with erbiumdoped fiber amplifier (EDFA) as gain  medium and Sagnac loop mirror interferometer as filter. Stable and flat lasing spectrum was achieved when highly  nonlinear fiber (HNLF) was inserted into the laser cavity. The number of lasing lines and extinction ratio (ER) was directly influenced by EDFA gain where at maximum setting, 14 lasing lines with ER of 19 dB were generated. The  stable and flat spectrum achieved spanned about 1.6 nm. This is due to the induced intensity dependent loss  mechanism in the cavity by adjusting the half-wave plate of the polarization controller in combination with the  HNLF. The MWFL output showed peak power variation of about 2.1 dB within 100 minutes of observation time.
基于Sagnac环镜干涉仪的多波长光纤激光器的非线性效应
介绍了一种以掺铒光纤放大器(EDFA)为增益介质,Sagnac环镜干涉仪为滤波器的多波长光纤激光器(MWFL)。将高度非线性光纤(HNLF)插入激光腔内,可获得稳定平坦的激光光谱。EDFA增益直接影响激光线数和消光比(ER),在最大设置下可产生14条消光线,消光比为19 dB。获得的稳定平坦光谱跨度约为1.6 nm。这是由于通过调节偏振控制器的半波片与HNLF相结合,在腔内产生了诱导强度依赖的损耗机制。在100分钟的观测时间内,MWFL输出的峰值功率变化约为2.1 dB。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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