首页> 外文会议>Organic photonic materials and devices XVII >The relationship between polymer waveguide optical interconnection end facet roughness and the optical input and output coupling losses
【24h】

The relationship between polymer waveguide optical interconnection end facet roughness and the optical input and output coupling losses

机译:聚合物波导光互连端面粗糙度与光输入输出耦合损耗之间的关系

获取原文
获取原文并翻译 | 示例

摘要

The RMS surface roughness of an optical polymer waveguide end facet cut by a milling router and measured by AFM is investigated for a range of rotation speeds and translation speeds of the router. It was found that 1 flute (cutting edge) routers gave significantly less rough surfaces than 2 or 3 flute routers. The best results were achieved for a 1 flute router when the milling bit was inserted from the copper layer side of the board with a rotation speed of 15,000 rpm and a translation speed of 0.25 m/min which minimized the waveguide core end facet RMS roughness to 183 ± 8 nm and gave input optical coupling loss of 1.7 dB ± 0.5 dB and output optical coupling loss of 2.0 dB ± 0.7 dB. The relationship between optical coupling loss at the input and output of the waveguides and waveguide end facet roughness is also investigated in this paper. The ratio of RMS roughness to autocorrelation length of the roughness is shown to have a quantified linear relationship with experimental measurements of optical insertion loss, input optical coupling loss and output optical coupling loss. A new fabrication technique for cut waveguide end facet treatment has been proposed and demonstrated which reduces the insertion loss by 2.60 dB ± 1.3 dB which is more than that achieved by the closest available index matching fluid which gave 2.23 dB ± 1.2 dB and which is far more robust for use in commercial products.
机译:针对铣刀的旋转速度和平移速度范围,研究了由铣刀切割并通过AFM测量的光学聚合物波导端面的RMS表面粗糙度。结果发现,与2个或3个凹槽铣刀相比,1个凹槽(切削刃)铣刀产生的粗糙表面明显更少。当将铣刀从板的铜层侧插入时,以1沟槽铣刀获得最佳结果,旋转速度为15,000 rpm,平移速度为0.25 m / min,这将波导芯端面的RMS粗糙度降至最低。 183±8 nm,输入光耦合损耗为1.7 dB±0.5 dB,输出光耦合损耗为2.0 dB±0.7 dB。本文还研究了波导输入和输出处的光耦合损耗与波导端面粗糙度之间的关系。 RMS粗糙度与粗糙度的自相关长度之比显示出与光学插入损耗,输入光耦合损耗和输出光耦合损耗的实验测量值具有量化的线性关系。提出并证明了一种用于切割波导端面处理的新制造技术,该技术可将插入损耗降低2.60 dB±1.3 dB,这比最近可用的折射率匹配液达到2.23 dB±1.2 dB的效果要好得多。更加坚固耐用,可用于商业产品。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号