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Thin-Film Filter-based Wavelength Division Multiplexers/Demultiplexers in an Angle-Multiplexed Architecture

机译:角度多路复用架构中基于薄膜滤波器的波分复用器/解复用器

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This paper shows how an angle multiplexing concept permits one thin-film filter (TF) to multiplex or demultiplex N wavelength optical beams, leading to cost-effective wavelength division multiplexers/demultiplexers (MUXs/DeMUXs). Our first TF-based wavelength MUX/DeMUX structure is arranged in a reflective design in which only the λ_N wavelength optical beam cannot be recombined into the main channel. Fully multiplexing and demultiplexing operations can be accomplished by using our transmissive TF-based wavelength MUX/DeMUX architecture. Experimental proof of concept for our reflective TF-based wavelength MUX/DeMUX structure using one TF, a triple fiber-optic collimator, and an optical circulator separates two wavelength optical beams with their channel spacing of 0.8 nm from the main channel. In this case, measured optical losses of 0.67 dB, 1.66 dB, and 2.59 dB are obtained for the first, the second, and the remaining wavelength optical beams, respectively. Optical crosstalk and polarization dependent loss of < -18 dB and < 0.08 dB are also investigated, respectively.
机译:本文展示了角度多路复用概念如何允许一个薄膜滤光片(TF)对N个波长的光束进行多路复用或解复用,从而实现了具有成本效益的波分复用器/解复用器(MUX / DeMUX)。我们的第一个基于TF的波长MUX / DeMUX结构采用反射设计,其中只有λ_N波长的光束无法重新组合到主通道中。完全多路复用和多路分解操作可以通过使用我们基于TF的透射波长MUX / DeMUX体系结构来完成。使用一个TF,三重光纤准直器和光环行器的基于反射TF的反射式MUX / DeMUX结构的概念性的实验验证,可将两个波长的光束与主通道分开,其通道间距为0.8 nm。在这种情况下,对于第一,第二和其余波长光束分别获得0.67 dB,1.66 dB和2.59 dB的测量光损耗。还分别研究了<-18 dB和<0.08 dB的光串扰和偏振相关损耗。

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