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Design of non-polarizing thin film edge filters

机译:无偏振薄膜边缘滤光片的设计

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摘要

The separation between s- and p-polarization components invariably affects thin film edge filters used for tilted incidence and is a difficult problem for many applications, especially for optical communication. This paper presents a novel design method to obtain edge filters with non-polarization at incidence angle of 45°. The polarization separation at 50% trans-mittance for a long-wave-pass filter and a short-wave-pass filter is 0.3 nm and 0.1 run respectively. The design method is based on a broadband Fabry-Perot thin-film interference filter in which the higher or lower interference band at both sides of the main transmittance peak can be used for initial design of long-wave-pass filter or short-wave-pass filter and then can be refined to reduce the transmittance ripples. The spacer 2H2L2H or 2L2H2L of the filter is usually taken. Moreover, the method for expanding the bandwidth of rejection and transmission is explained. The bandwidth of 200 nm for both rejection region and transmission band is obtained at wavelength 1550 nm. In this way, the long-wave-pass and short-wave-pass edge filters with zero separation between two polarization components can easily be fabricated.
机译:s偏振分量和p偏振分量之间的间隔始终会影响用于倾斜入射的薄膜边缘滤光片,并且对于许多应用(尤其是光通信)而言,这是一个难题。本文提出了一种新颖的设计方法来获得入射角为45°的非偏振边缘滤波器。长波通滤光片和短波通滤光片在50%透射率下的偏振分离分别为0.3 nm和0.1游程。该设计方法基于宽带Fabry-Perot薄膜干涉滤光片,其中主透射峰两侧的较高或较低干涉带可用于长波通滤光片或短波滤光片的初始设计。通过滤波器,然后可以进行精简以减少透射纹波。通常采用过滤器的垫片2H2L2H或2L2H2L。此外,说明了扩展拒绝和发送带宽的方法。在波长1550 nm处获得200 nm的抑制带宽和透射带带宽。以此方式,可以容易地制造在两个偏振分量之间具有零间隔的长波通和短波通边缘滤波器。

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