Sun Caiming, Yang Lesi, Li Binghui, Shi Wu, Wang Hongjie, Chen Zhenmin, Nie Xiaomin, Deng Shupeng, Ding Ning, Zhang Aidong
Opt Lett. 2021 Nov 15;46(22):5699-5702. doi: 10.1364/OL.443414.
In this Letter, a two-dimensional (2D) beam steering on silicon nitride (SiNx) nanophotonic phased arrays from visible to near-infrared wavelengths is reported for the first time, to the best of our knowledge. In order to implement beam steering along the transverse direction for one-dimensional waveguide surface grating arrays, wavelengths from 650 to 980 nm provided by the supercontinuum laser are used to excite the phased array. Then the beams are parallel radiated with steering angles in a sequence of 26.84° to -16.54 along the transverse direction, and a continuous line in the far field consisting of parallel emitted spots is produced with a total view angle of 43.38°. Moreover, this continuous far-field line is steered along the longitudinal direction with massive wavelengths simultaneously tuned by phase shifts from -/2 to over +/2. This method with massive parallel wavelengths emitted paves a new way for 2D steering on SiNx nanophotonic phased arrays.
据我们所知,本文首次报道了在氮化硅(SiNx)纳米光子相控阵上实现从可见光到近红外波长的二维(2D)光束转向。为了实现一维波导表面光栅阵列沿横向的光束转向,利用超连续激光提供的650至980nm波长来激发相控阵。然后,光束沿横向以26.84°至 -16.54°的一系列转向角平行辐射,在远场产生由平行发射光斑组成的连续线,总视角为43.38°。此外,这条连续的远场线沿纵向转向,同时通过从 -π/2到 +π/2的相移对大量波长进行调谐。这种发射大量平行波长的方法为SiNx纳米光子相控阵上的二维转向开辟了一条新途径。