Wang Zhicheng, Feng Junbo, Li Haitang, Zhang Yuqing, Wu Yilu, Hu Yuqi, Wu Jiagui, Yang Junbo
College of Artificial Intelligence, Southwest University, Chongqing 400715, China.
Center of Material Science, National University of Defense Technology, Changsha 410073, China.
Nanomaterials (Basel). 2023 Sep 8;13(18):2516. doi: 10.3390/nano13182516.
The on-chip nano-integration of large-scale optical phased arrays (OPAs) is a development trend. However, the current scale of integrated OPAs is not large because of the limitations imposed by the lateral dimensions of beam-splitting structures. Here, we propose an ultra-compact and broadband OPA beam-splitting scheme with a nano-inverse design. We employed a staged design to obtain a T-branch with a wavelength bandwidth of 500 nm (1300-1800 nm) and an insertion loss of -0.2 dB. Owing to the high scalability and width-preserving characteristics, the cascaded T-branch configuration can significantly reduce the lateral dimensions of an OPA, offering a potential solution for the on-chip integration of a large-scale OPA. Based on three-dimensional finite-difference time-domain (3D FDTD) simulations, we demonstrated a 1 × 16 OPA beam-splitter structure composed entirely of inverse-designed elements with a lateral dimension of only 27.3 μm. Additionally, based on the constructed grating couplers, we simulated the range of the diffraction angle θ for the OPA, which varied by 0.6°-41.6° within the wavelength range of 1370-1600 nm.
大规模光学相控阵(OPA)的片上纳米集成是一个发展趋势。然而,由于分光结构横向尺寸的限制,目前集成OPA的规模不大。在此,我们提出一种采用纳米逆向设计的超紧凑宽带OPA分光方案。我们采用分级设计获得了一个波长带宽为500 nm(1300 - 1800 nm)、插入损耗为 -0.2 dB的T型分支。由于具有高可扩展性和保宽特性,级联T型分支结构可显著减小OPA的横向尺寸,为大规模OPA的片上集成提供了一种潜在解决方案。基于三维时域有限差分(3D FDTD)模拟,我们展示了一种完全由逆向设计元件组成的1×16 OPA分光器结构,其横向尺寸仅为27.3μm。此外,基于构建的光栅耦合器,我们模拟了OPA的衍射角θ范围,在1370 - 1600 nm波长范围内其变化为0.6° - 41.6°。