摘要
光纤是现代光学中最通用的组件之一。它们最具价值的特性之一是能够以极低的损耗在极远的距离(甚至几公里)传输光能。另一方面,以尽可能高效率地将光耦合到光纤中往往是一项非常微妙的工作:在其他方面,光纤耦合透镜必须精心设计,以确保焦点与光纤的传播模式尽可能紧密地匹配。通过快速物理光学模拟VirtualLab Fusion中的参数优化,我们设计了一个圆锥表面的平凸透镜,用于将光耦合到单模光纤中。

设计任务

系统构建板块-导入透镜文件

系统构建块-光纤效率探测器

优化

Introduction to the Parametric Optimization Document
总结-组件...

初始透镜评估

参数优化

优化透镜的评估

VirtualLab Fusion技术

文件信息

进一步阅读
- Optimal Working Distance for Coupling Light into Single-Mode Fibers
- Comparison of Different Lenses for Fiber Coupling
- Introduction to the Parametric Optimization Document
