Sánchez-Postigo Alejandro, Ginel-Moreno Pablo, Schmid Jens H, Hadij-ElHouati Abdelfettah, Ortega-Moñux Alejandro, Gonzalo Wangüemert-Pérez J, Halir Robert, Cheben Pavel, Molina-Fernández Íñigo
Opt Express. 2024 Nov 4;32(23):41156-41172. doi: 10.1364/OE.537342.
Surface grating couplers, such as fiber-chip grating couplers and optical antennas, are fundamental devices in photonic integrated circuits, as they enable the coupling of light between the chip and an external medium. An important metric of surface grating couplers is the coupling efficiency, and high values, greater than -1 dB, are required for applications in quantum technology, light detection and ranging, and optical interconnects. Surface grating couplers typically suffer from radiation loss to the substrate, which significantly limits their coupling efficiency. Here we propose a novel grating-coupling concept that utilizes a high-refractive-index upper cladding to frustrate radiation orders to the substrate by operating in a single-beam diffraction regime. To illustrate this concept, we report the design of an easily fabricable silicon surface grating coupler with an unprecedented coupling efficiency of -0.2 dB to a single-mode optical fiber. Furthermore, the proposed strategy allows us to design an evanescently coupled millimeter-long optical antenna with a coupling efficiency of -0.1 dB to free space. Additionally, an ultra-fast wavelength-tunable beam steering of 0.37°/nm is achieved, which corresponds to more than a 2.5-fold enhancement over comparable silicon antennas. These results represent a pathway for a new set of photonic integrated interfaces for applications in which high-efficiency chip-to-fiber and chip-to-free-space coupling is critical.
表面光栅耦合器,如光纤-芯片光栅耦合器和光学天线,是光子集成电路中的基础器件,因为它们能够实现芯片与外部介质之间的光耦合。表面光栅耦合器的一个重要指标是耦合效率,在量子技术、光探测与测距以及光互连等应用中,需要大于-1 dB的高耦合效率值。表面光栅耦合器通常会遭受向衬底的辐射损耗,这显著限制了它们的耦合效率。在此,我们提出一种新颖的光栅耦合概念,该概念利用高折射率上包层,通过在单光束衍射模式下工作来抑制向衬底的辐射级次。为了说明这一概念,我们报告了一种易于制造的硅表面光栅耦合器的设计,其与单模光纤的耦合效率达到了前所未有的-0.2 dB。此外,所提出的策略使我们能够设计出一种与自由空间耦合效率为-0.1 dB的倏逝耦合毫米长光学天线。此外,还实现了0.37°/nm的超快波长可调光束转向,这比同类硅天线提高了超过两倍半。这些结果为一系列新的光子集成接口开辟了道路,这些接口对于高效芯片到光纤以及芯片到自由空间的耦合至关重要的应用而言至关重要。