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用于光通信波段的具有四分之一波长介质堆叠的全向高反射镜设计。

Design of omnidirectional high reflectors with quarter-wave dielectric stacks for optical telecommunication bands.

作者信息

Kim Sung-Hwa, Hwangbo Chang Kwon

机构信息

Department of Physics, Inha University, Incheon, South Korea.

出版信息

Appl Opt. 2002 Jun 1;41(16):3187-92. doi: 10.1364/ao.41.003187.

Abstract

A design for omnidirectional high reflectors with quarter-wave dielectric stacks in the optical telecommunication band that uses conventional optical thin-film design theory is described. The omnidirectional bandwidth is derived in units of wavelength and investigated as a function of its high- and low-refractive-index values in the near infrared. The results show that the high refractive index should be larger than 2.26 for an omnidirectional high reflector and that the low refractive index for maximum onmidirectional bandwidth should be approximately 1.5. It is shown that one can design broad-bandwidth omnidirectional high reflectors for S, C, and L bands for optical telecommunication simply by connecting the band edges of omnidirectional high reflectors.

摘要

描述了一种利用传统光学薄膜设计理论,在光通信波段采用四分之一波长介质堆叠的全向高反射镜设计。全向带宽以波长为单位导出,并作为其在近红外波段的高折射率和低折射率值的函数进行研究。结果表明,对于全向高反射镜,高折射率应大于2.26,而对于最大全向带宽,低折射率应约为1.5。结果表明,通过连接全向高反射镜的波段边缘,人们可以简单地设计用于光通信的S、C和L波段的宽带宽全向高反射镜。

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