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首页> 外文期刊>Journal of Lightwave Technology >Bandpass Filter Response Through Concatenation of Graded-Index and Step-Index Few-Mode Fibers
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Bandpass Filter Response Through Concatenation of Graded-Index and Step-Index Few-Mode Fibers

机译:通过分级折射率和阶跃折射率少模光纤级联的带通滤波器响应

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摘要

We propose an all-fiber bandpass filter using a combination of a graded-index few-mode fiber (GI-FMF) and a step-index few-mode fiber (SI-FMF), in which distinct long-period fiber gratings (LPFGs) are formed. The first LPFG in the GI-FMF performs the mode conversion of the ${rm{L}}{{rm{P}}_{01}}$ mode to the ${rm{L}}{{rm{P}}_{11}}$ mode over broad wavelength range. The second LPFG in the SI-FMF reversely converts the ${rm{L}}{{rm{P}}_{11}}$ mode to the ${rm{L}}{{rm{P}}_{01}}$ mode at the specific resonance wavelength. Such a sequence of mode transition yields a single passband in the transmission spectrum. Though the tunable periodicity is not crucial to the first LPFG, it is beneficial to the second LPFG for changing the passband wavelength.
机译:我们提出了一种全光纤带通滤波器,该滤波器将渐变折射率少模光纤(GI-FMF)和阶跃折射率少模光纤(SI-FMF)结合使用,其中使用不同的长周期光纤光栅(LPFG) ) 形成。 GI-FMF中的第一个LPFG将$ {rm {L}} {{rm {P}} _ {01}} $模式转换为$ {rm {L}} {{rm {P} } _ {11}} $模式在较宽的波长范围内。 SI-FMF中的第二个LPFG将$ {rm {L}} {{rm {P}} _ {11}} $模式反向转换为$ {rm {L}} {{rm {P}} __ { 01}} $模式在特定谐振波长处。这种模式转换序列在传输频谱中产生单个通带。尽管可调周期对于第一个LPFG并不关键,但对于第二个LPFG改变通带波长却是有益的。

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