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Optical Filter Design Using Background Wavelength Processing Techniques

机译:使用背景波长处理技术的光学滤波器设计

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摘要

Amorphous SiC tandem heterostructures are used to filter a specific band, in the visible range. Experimental and simulated results are compared to validate the use of SiC multilayered structures in applications where gain compensation is needed or to attenuate unwanted wavelengths. Spectral response data acquired under different frequencies, optical wavelength control and side irradiations are analyzed. Transfer function characteristics are discussed. Color pulsed communication channels are transmitted together and the output signal analyzed under different background conditions. Results show that under controlled wavelength backgrounds, the device sensitivity is enhanced in a precise wavelength range and quenched in the others, tuning or suppressing a specific band. Depending on the background wavelength and irradiation side, the device acts either as a long-, a short-, or a band-rejection pass filter. An optoelectronic model supports the experimental results and gives insight on the physics of the device.
机译:非晶SiC串联异质结构用于过滤可见光范围内的特定频带。比较了实验结果和模拟结果,以验证SiC多层结构在需要增益补偿或衰减不想要的波长的应用中的使用。分析在不同频率,光波长控制和侧面照射下获得的光谱响应数据。讨论了传递函数的特征。彩色脉冲通信通道一起传输,并且在不同背景条件下分析输出信号。结果表明,在受控的波长背景下,器件灵敏度在精确的波长范围内会增强,而在其他波长范围内会淬灭,从而调谐或抑制特定的波段。根据背景波长和照射侧,该设备可以用作长,短或带阻通过滤光片。光电模型支持实验结果,并提供有关器件物理的见解。

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