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使用变迹鱼骨光栅耦合器实现可扩展且稳健的光束整形。

Scalable and robust beam shaping using apodized fish-bone grating couplers.

作者信息

Ropp Chad, Maurya Dhriti, Yulaev Alexander, Westly Daron, Simelgor Gregory, Aksyuk Vladimir

出版信息

Opt Express. 2023 Nov 20;31(24):40792-40802. doi: 10.1364/OE.506199.

Abstract

Efficient power coupling between on-chip guided and free-space optical modes requires precision spatial mode matching with apodized grating couplers. Yet, grating apodizations are often limited by the minimum feature size of the fabrication approach. This is especially challenging when small feature sizes are required to fabricate gratings at short wavelengths or to achieve weakly scattered light for large-area gratings. Here, we demonstrate a fish-bone grating coupler for precision beam shaping and the generation of millimeter-scale beams at 461 nm wavelength. Our design decouples the minimum feature size from the minimum achievable optical scattering strength, allowing smooth turn-on and continuous control of the emission. Our approach is compatible with commercial foundry photolithography and has reduced sensitivity to both the resolution and the variability of the fabrication approach compared to subwavelength meta-gratings, which often require electron beam lithography.

摘要

片上导波光学模式与自由空间光学模式之间的高效功率耦合需要通过变迹光栅耦合器进行精确的空间模式匹配。然而,光栅变迹通常受限于制造工艺的最小特征尺寸。当需要小特征尺寸来制造短波长光栅或实现大面积光栅的弱散射光时,这一挑战尤为突出。在此,我们展示了一种用于精确光束整形并在461纳米波长处产生毫米级光束的鱼骨形光栅耦合器。我们的设计将最小特征尺寸与可实现的最小光学散射强度解耦,从而实现发射的平滑开启和连续控制。与通常需要电子束光刻的亚波长超光栅相比,我们的方法与商业代工光刻兼容,并且对制造工艺的分辨率和可变性的敏感度更低。

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