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Optical wavelength separators using thin film coating on an absorbing substrate

机译:光学波长分离器在吸收基板上使用薄膜涂层

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An new wavelength separator device is presented. The device consists of a single layer coating material on an absorbing substrate. The new device will be used to separate wavelengths in optical networks. The proposed design approach is applied for two devices that operate in the UV and visible regions. The proposed devices can be used to separate two or four wavelengths. The continuous increase in using optical communication systems in diverse fields has stimulated the need for optical devices that improve system performance. Currently, wavelength separation, multiplexing and modulation schemes are the backbone of most communication systems and they will play a more important role in the next generation optical systems since they allow more bandwidth and increasing number of transmitted channels. Optical wavelength separator devices allow selecting signals having specific wavelength. A number of devices were reported in the literature that uses different approaches in wavelength division and separation. This work presents a new approach for designing a wavelength separator for optical applications. The design approach of the device is based on coating an absorbing substrate with a single thin film layer. The two case studies considered in this work operate in ultraviolet and visible ranges. These are useful for integrated optic circuits where the dimensions of the devices and the optical attenuation are highly reduced. The same design approach can be used for materials that are more convenient wavelengths used in optical fiber systems.
机译:提出了一种新的波长分离器装置。该装置包括在吸收基板上的单层涂层材料组成。新设备将用于在光网络中分离波长。所提出的设计方法适用于在UV和可见区域中运行的两个设备。所提出的装置可用于分离两种或四个波长。在不同领域中使用光通信系统的连续增加刺激了需要改善系统性能的光学设备的需求。目前,波长分离,多路复用和调制方案是大多数通信系统的骨干,并且它们将在下一代光学系统中发挥更重要的作用,因为它们允许更多的带宽和越来越多的发送通道。光学波长分离器装置允许选择具有特定波长的信号。在文献中报告了许多设备,其在波分和分离中使用不同的方法。这项工作提出了一种设计用于光学应用的波长分离器的新方法。该装置的设计方法基于涂覆具有单个薄膜层的吸收基板。在这项工作中考虑的两种案例研究在紫外线和可见范围内运行。这些对于集成光电路是有用的,其中设备的尺寸和光学衰减高度降低。相同的设计方法可用于光纤系统中使用更方便的波长的材料。

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