Kim Jae-Yong, Lee Seungsoo, Hong Seokjin, Neseli Berkay, Choi Seungyoon, Park Hyo-Hoon, Kurt Hamza
The School of Electrical Engineering, Korea Advanced Institute of Science and Technology (KAIST), Daejeon, Republic of Korea.
Nanophotonics. 2025 Jun 9;14(14):2495-2505. doi: 10.1515/nanoph-2025-0148. eCollection 2025 Jul.
This paper presents a dual-polarization multiplexed optical phased array (OPA) implemented on a 220 nm silicon-on-insulator (SOI) platform, enabling continuous beam steering across TE and TM modes. While effectively guiding TE- and TM-polarized light, the proposed OPA on this platform faces the challenge of overcoming the intrinsically high effective refractive index disparity between the two modes upon radiation from the grating antenna. To mitigate this challenge, key OPA components - polarization beam combiner, polarization-independent beam splitter, and index-modulated pixelized grating antenna - were optimized using inverse design methods and integrated, enabling efficient and seamless beam steering across both polarizations. With a 100 nm wavelength tuning range and dual-polarization operation, the fabricated 64-channel OPA achieves a notable longitudinal beam steering range of 34.9° across the TE and TM modes, along with full 2-D beam steering capability. The experimental results confirm the effectiveness of the proposed approach, highlighting its potential for advancing the next-generation LiDAR and optical wireless communication systems.
本文介绍了一种在220纳米绝缘体上硅(SOI)平台上实现的双偏振复用光学相控阵(OPA),可实现跨TE和TM模式的连续光束转向。虽然该平台上提出的OPA能有效引导TE和TM偏振光,但在从光栅天线辐射时,面临着克服两种模式之间固有高有效折射率差异的挑战。为缓解这一挑战,使用逆向设计方法对OPA的关键组件——偏振光束合成器、偏振无关分束器和折射率调制像素化光栅天线进行了优化并集成,从而实现了跨两种偏振的高效无缝光束转向。所制造的64通道OPA具有100纳米波长调谐范围和双偏振操作,在TE和TM模式下实现了34.9°的显著纵向光束转向范围,以及完整的二维光束转向能力。实验结果证实了所提方法的有效性,突出了其在推进下一代激光雷达和光无线通信系统方面的潜力。