Wang Yaru, Guo Rongxiang, Zou Changguang, Zhang Zunyue, Liu Kun, Jiang Junfeng, Liu Tiegen, Cheng Zhenzhou
Opt Lett. 2024 Oct 1;49(19):5511-5514. doi: 10.1364/OL.532893.
Short-wavelength mid-infrared (SWMIR) silicon photonics has gained significant attention due to its applications in sensing, spectroscopy, and communications. A perfectly vertical grating coupler is a valuable packaging technique that is convenient for chip-to-chip optical interconnects and has low risks of mechanical failure during testing. However, SWMIR grating couplers have fewer periods to tailor the diffracted light, hindering the improvement of bandwidths and backreflections. Herein, we demonstrate a perfectly vertical subwavelength grating coupler by using a modified inverse design approach. The device exhibits a coupling efficiency of -5.9 dB with a 1-dB bandwidth of ∼122 nm and a low backreflection of -19.2 dB at 2200 nm wavelengths. Besides, the device also exhibits exceptional spatial fiber misalignment tolerance. The study underscores the effectiveness of the inverse design strategy in subwavelength grating couplers, charting a path to advance the mid-infrared silicon photonic packaging.
短波长中红外(SWMIR)硅光子学因其在传感、光谱学和通信领域的应用而备受关注。完美垂直光栅耦合器是一种有价值的封装技术,便于芯片间的光互连,并且在测试期间机械故障风险较低。然而,SWMIR光栅耦合器用于调整衍射光的周期较少,这阻碍了带宽和背反射的改善。在此,我们通过使用改进的逆向设计方法展示了一种完美垂直亚波长光栅耦合器。该器件在2200nm波长处的耦合效率为-5.9dB,1dB带宽约为122nm,背反射低至-19. , 2dB。此外,该器件还表现出出色的空间光纤对准容差。该研究强调了逆向设计策略在亚波长光栅耦合器中的有效性,为推进中红外硅光子封装指明了道路。