Kim Jae-Yong, Yoon Jinhyeong, Kim Junhyeong, Kwon Nam-Hyun, Rhee Hyun-Woo, Baek Mideum, Lee Yongtae, Park Hyo-Hoon, Yoon Hyeonho
Opt Lett. 2022 Oct 1;47(19):4857-4860. doi: 10.1364/OL.470667.
We demonstrate beam steering using a passive silica optical phased array (OPA) with wavelength tuning. In this OPA, a constant path difference is built up to assign sequential phase delays with a wavelength variation in arrayed waveguide channels for the beam steering. From as-fabricated 1 × 101 passive silica OPA chips, we successfully achieved beam forming with a transversal divergence angle of 0.57° at a 1548.3-nm wavelength and also beam steering of 15.4° by wavelength tuning of 30.7 nm. Combining a cylindrical lens in front of the end-fire radiators, the longitudinal divergence angle could be reduced from 13.0° to 0.42°. The side-mode suppression ratio of the beam was 10.3 dB at the center position. Through simulation, we analyzed the effects of the phase errors on the beam quality, due to the effective index fluctuation of the waveguide channels, and provided an allowable error range to attain beam forming from the passive OPA.
我们展示了使用具有波长调谐功能的无源二氧化硅光学相控阵(OPA)进行光束转向。在这种OPA中,通过在阵列波导通道中利用波长变化建立恒定的光程差来分配顺序相位延迟,以实现光束转向。从制备好的1×101无源二氧化硅OPA芯片中,我们成功地在1548.3纳米波长下实现了横向发散角为0.57°的光束形成,并且通过30.7纳米的波长调谐实现了15.4°的光束转向。在端射辐射器前组合一个柱面透镜,纵向发散角可从13.0°减小到0.42°。光束在中心位置的旁瓣抑制比为10.3分贝。通过模拟,我们分析了由于波导通道有效折射率波动导致的相位误差对光束质量的影响,并给出了从无源OPA实现光束形成的允许误差范围。