Kim Myeongjin, Park Q-Han
Department of Physics, Korea University, Seoul, 02841, Republic of Korea.
Nanophotonics. 2024 Feb 22;13(8):1459-1466. doi: 10.1515/nanoph-2023-0771. eCollection 2024 Apr.
Efficient energy transfer is crucial in electromagnetic communication. Therefore, producing a waveguide coupler that achieves broadband, nonreflective transmission is a challenging task. With the advancement of silicon-based integrated photonic circuits, fiber-to-chip coupling has become increasingly important. Although various couplers have been developed for fiber-to-chip coupling, they often have limitations such as long coupling length, low coupling efficiency, and narrow bandwidth. This is due to the inability to eliminate reflections between the two waveguides. Here, we introduce a method using universal impedance matching theory and transformation optics to eliminate reflections between two waveguides. The coupler, called the universal impedance matching coupler, using this method has the shortest subwavelength coupling length, a 99.9 % coupling efficiency, and a broad bandwidth.
高效的能量传输在电磁通信中至关重要。因此,制造一种能实现宽带、无反射传输的波导耦合器是一项具有挑战性的任务。随着硅基集成光子电路的发展,光纤到芯片的耦合变得越来越重要。尽管已经开发出了各种用于光纤到芯片耦合的耦合器,但它们往往存在耦合长度长、耦合效率低和带宽窄等局限性。这是由于无法消除两个波导之间的反射。在此,我们介绍一种利用通用阻抗匹配理论和变换光学来消除两个波导之间反射的方法。使用这种方法的耦合器,即通用阻抗匹配耦合器,具有最短的亚波长耦合长度、99.9%的耦合效率和宽带宽。