超高或宽带垂直合的自由形状连锁式灵感元合器
Tianqu Chen1,2,3,4, Mingfeng Xu2,3,4, Mingbo Pu2,3,4,5
1Department of Communication, Science and Engineering, Fudan University, Shanghai 200438, China.
Nanophotonics (Berlin, Germany)
|April 28, 2025
概括
研究人员开发了先进的超表面辅助波导合器 (元合器),使用准连续介电链阵列和拓优化. 这克服了传统设计的局限性,实现了芯片上光学设备的超高合效率和宽带操作.
科学领域:
- 光子学和纳米技术的使用.
- 集成光学 集成光学 集成光学
- 地表表层设备 设备
背景情况:
- 超表面辅助波导合器 (超合器) 跨越自由空间光学和芯片上的设备,使多功能光学功能成为可能.
- 传统的元合器由于近场合和单元细胞设计而受到低效率和窄带宽的影响.
- 传统的设计方法很难有效地解决这些固有的局限性.
研究的目的:
- 为了提高超表面辅助波导合器的效率和带宽.
- 为了克服离散的超表面设计和近场合问题的局限性.
- 开发先进的元合器,以提高光通信和传感应用中的性能.
主要方法:
- 采用准连续介电链阵列来缓解相邻的合问题.
- 进行了衍射分析,以确定前置设计的合器中的性能障碍.
- 采用一个基于助理的拓优化算法来定制近场电场并抑制假衍射.
主要成果:
- 实现了93%的超高合效率,在1,550 nm时达到16.7 dB的灭绝比.
- 演示了一个宽带元合器,带宽超过350nm.
- 通过多目标优化,在O-到L频段实现了50%的平均合效率.
结论:
- 与传统设计相比,开发的元合器显著提高了合效率和带宽.
- 反向设计方法,包括拓优化,对于推进超表面集成芯片设备至关重要.
- 这些高性能元合器显示出在光通信,传感和非线性光学领域的应用的前景.
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