Chen Bin, Ruan Ziliang, Hu Jinyao, Wang Jingyi, Lu Chao, Lau Alan Pak Tao, Guo Changjian, Chen Kaixuan, Chen Pengxin, Liu Liu
Opt Express. 2021 Jan 18;29(2):1289-1295. doi: 10.1364/OE.413820.
A two-dimensional grating coupler for coupling light between a standard single-mode fiber and ridge waveguides on an X-cut lithium niobate thin-film is designed and demonstrated. Using circular holes for grating cells, simulated coupling losses reach -3.88 dB at 1550 nm and -5.78 dB at 1563 nm with 1-dB bandwidths of 49 nm and 45 nm for P-polarized and S-polarized light inputs, respectively. Experimentally, peak coupling losses of -5.13 dB at 1561 nm and -7.6 dB at 1568 nm are obtained for P-polarized and S-polarized light inputs, respectively, and corresponding 1 dB bandwidths are about 30 nm. An approach to improve the coupling performance of the grating coupler is also proposed using two crossing ellipses as grating cells as well as a bottom metal reflector. The coupling loss and the polarization dependent loss are decreased to around -3.4 dB and 0.44 dB, respectively.
设计并展示了一种用于在标准单模光纤与X切铌酸锂薄膜上的脊形波导之间耦合光的二维光栅耦合器。使用圆形孔作为光栅单元,对于P偏振光输入和S偏振光输入,在1550 nm处模拟耦合损耗达到-3.88 dB,在1563 nm处达到-5.78 dB,1 dB带宽分别为49 nm和45 nm。实验上,对于P偏振光输入和S偏振光输入,在1561 nm处分别获得-5.13 dB的峰值耦合损耗,在1568 nm处获得-7.6 dB的峰值耦合损耗,相应的1 dB带宽约为30 nm。还提出了一种使用两个交叉椭圆作为光栅单元以及底部金属反射器来提高光栅耦合器耦合性能的方法。耦合损耗和偏振相关损耗分别降低到约-3.4 dB和0.44 dB。