二次相互作用对薄波导结合器内器设计的影响
Optics express
|September 23, 2025
概括
为增强现实系统优化衍射波导组合器是关键. 较薄的光导体可以通过优先考虑镜面反射而不是高一级衍射来实现高合效率,简化设计.
科学领域:
- 光学和光子学 在光学和光子学.
- 材料科学 材料科学 材料科学
- 计算机工程 计算机工程
背景情况:
- 增强现实 (AR) 系统使用波导结合器进行显示.
- 下一代AR平台需要减轻重量和厚度.
- 更薄的玻璃光导对于小型化至关重要.
研究的目的:
- 为具有不同光导厚度的衍射波导组合器优化内合效率.
- 调查二次/反合损失对效率的影响.
- 探索薄波导的设计策略.
主要方法:
- 开发了一个封闭形式的表达式,用于内合效率,并考虑格子损失.
- 分析了光导体厚度,格子特性和效率之间的关系.
- 利用直接和反向设计技术进行格子优化.
- 研究了斜面和垂直侧墙格子结构.
主要成果:
- 降低光导体厚度降低了由于二次相互作用的理论内合效率极限.
- 在薄波导中,高合效率可以通过高光谱反射来实现,不一定是高一级衍射效率.
- 利用镜面反射扩大了与厚厚的光导相比的设计空间.
- 优化的倾斜格子和垂直侧墙结构展示了接近极限的性能.
结论:
- 薄波导提供了一条可行的途径,通过利用镜面反射来实现AR微型化.
- 对于薄波导来说,设计灵活性得到了增强,使优化变得更容易.
- 垂直侧墙格子提供了一个潜在的更简单的制造路线,具有可比性能.
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