Cheng Lirong, Mao Simei, Li Zhi, Han Yaqi, Fu H Y
Tsinghua-Berkeley Shenzhen Institute (TBSI), Tsinghua University, Shenzhen 518000, China.
Micromachines (Basel). 2020 Jul 8;11(7):666. doi: 10.3390/mi11070666.
Silicon photonics is an enabling technology that provides integrated photonic devices and systems with low-cost mass manufacturing capability. It has attracted increasing attention in both academia and industry in recent years, not only for its applications in communications, but also in sensing. One important issue of silicon photonics that comes with its high integration density is an interface between its high-performance integrated waveguide devices and optical fibers or free-space optics. Surface grating coupler is a preferred candidate that provides flexibility for circuit design and reduces effort for both fabrication and alignment. In the past decades, considerable research efforts have been made on in-plane grating couplers to address their insufficiency in coupling efficiency, wavelength sensitivity and polarization sensitivity compared with out-of-plane edge-coupling. Apart from improved performances, new functionalities are also on the horizon for grating couplers. In this paper, we review the current research progresses made on grating couplers, starting from their fundamental theories and concepts. Then, we conclude various methods to improve their performance, including coupling efficiency, polarization and wavelength sensitivity. Finally, we discuss some emerging research topics on grating couplers, as well as practical issues such as testing, packaging and promising applications.
硅光子学是一种赋能技术,可为集成光子器件和系统提供低成本大规模制造能力。近年来,它在学术界和工业界都受到了越来越多的关注,这不仅是因为其在通信领域的应用,还包括传感领域。随着硅光子学集成密度的提高,一个重要问题是其高性能集成波导器件与光纤或自由空间光学器件之间的接口。表面光栅耦合器是一个首选方案,它为电路设计提供了灵活性,并减少了制造和对准方面的工作量。在过去几十年中,人们对平面光栅耦合器进行了大量研究,以解决其与平面外边缘耦合相比在耦合效率、波长灵敏度和偏振灵敏度方面的不足。除了性能提升外,光栅耦合器还将具备新功能。在本文中,我们从基本理论和概念出发,回顾了光栅耦合器的当前研究进展。然后,我们总结了各种提高其性能的方法,包括耦合效率、偏振和波长灵敏度。最后,我们讨论了光栅耦合器的一些新兴研究课题,以及诸如测试、封装和有前景的应用等实际问题。