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Spectral Division of the Optical Fiber Passband Using Narrowband Controllable Filter on the Base of Semiconductor Waveguide Microresonator

机译:光纤通带的光谱划分使用窄带可控滤波器在半导体波导微谐射器基部上

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We analyze the new principle of multichannel spectral division of optical fiber passband using controllable narrowband integrated optical filters composed of two-coupled ring microresonators made of different semiconductor materials. It is shown that appropriate selecting the semiconductor material and optimizing the design factors of selective optical element allows creating the simple and economical integrated optical filter with bandwidth 0.1 nm, frequency separation between adjacent optical carriers 0.2 nm and signal-to-noise ratio 50 dB. Utilizing such filters in optical fiber communication lines makes it possible to increase the number of transmitted in parallel optical carrier wavelengths up to 160 and even more, i.e., to provide the traffic transmission with the speed up to 1.6 Tbit/s in one direction and in single optical fiber.
机译:我们使用由由不同半导体材料制成的双耦合环微钻头组成的可控窄带集成光学滤波器来分析光纤通带的多通道光谱分割的新原理。 It is shown that appropriate selecting the semiconductor material and optimizing the design factors of selective optical element allows creating the simple and economical integrated optical filter with bandwidth 0.1 nm, frequency separation between adjacent optical carriers 0.2 nm and signal-to-noise ratio 50 dB.利用光纤通信线中的这种滤波器使得可以增加直到160甚至更多的并行光学载波波长的发送的数量,即,以在一个方向上提供高达1.6 Tbit / s的交通传输单光纤。

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