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作 者:徐春霞 吴良英[1] XU Chun-xia;WU Liang-ying(Key Laboratory of All Optical Network and Advanced Telecommunication Network of Ministry of Education, Institute of Lightwave Technology, Beijing Jiaotong University, Beijing 100044,China)
机构地区:[1]北京交通大学光波技术研究所全光网络与现代通信网教育部重点实验室,北京100044
出 处:《光电技术应用》2017年第6期24-28,66,共6页Electro-Optic Technology Application
摘 要:提出一种全光纤带通声光可调谐滤波器结构,通过在包层腐蚀的单模光纤中引入模式转换器,来阻断纤芯中原本传输的基模,并同时将包层模耦合至纤芯中。结果表明,增加声横波频率,带通滤波器谐振峰出现"蓝移"现象,并且,滤波器谐振峰随着包层半径的增大而减小,声横波功率的增加可以一定程度增大谐振波峰。在包层半径rcl=32.5μm,声横波功率Pa=20 mW,频率fa=1.5 MHz处获得3 dB带宽为2.13 nm的带通滤波;调节声横波频率fa从1.2 MHz至1.5 MHz,可实现85.18 nm波长范围的调谐,该波长可调谐带通滤波器可以用在增益带宽较大的光纤激光器中。An all-fiber band-pass acousto-optic tunable filter is proposed.By introducing a mode converter into a cladding-etched single-mode fiber,the fundamental mode transmitted in the core originally is blocked and the cladding mode is coupled in the fiber core at the same time.The results indicate that the band-pass filter has a blue shift when acoustic frequency increases,and the resonant peak of the filter decreases with the increase of cladding radius,moreover,the increase of the acoustic power can also increase the resonance peak of the filter to some extent.Meanwhile,a band pass resonance peak with3dB bandwidth of2.13nm is obtained when the cladding radius is kept at32.5μm,and the acoustic power and frequency are fixed at20mW and1.5MHz respectively.The tunable wavelength of85.18nm can be achieved when the acoustic frequency is adjusted from1.2MHz to1.5MHz.The device has the potential to be applied into the fiber lasers with large gain bandwidth
关 键 词:单模光纤 模式转换 带通滤波器 声光可调谐滤波器
分 类 号:TN913.7[电子电信—通信与信息系统]
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