包层(金属加工)
材料科学
绝缘体上的硅
栅栏
消光比
制作
光电子学
功率分配器和定向耦合器
光子学
光学
电子线路
硅
物理
电气工程
工程类
病理
冶金
医学
替代医学
波长
作者
Alejandro Ortega‐Moñux,Carlos Alonso‐Ramos,Alejandro Maese‐Novo,Robert Halir,L. Zavargo-Peche,Diego Pérez‐Galacho,Íñigo Molina‐Fernández,J. Gonzalo Wangüemert‐Pérez,Pavel Cheben,Jens H. Schmid,J. Lapointe,Dan‐Xia Xu,Siegfried Janz
标识
DOI:10.1002/lpor.201200106
摘要
Abstract Multimode interference couplers (MMIs) are fundamental building blocks in photonic integrated circuits. Here it is experimentally demonstrated, for the first time, a two‐fold length reduction in an MMI coupler without any penalty on device performance. The design is based on a slotted 2 × 2 MMI fabricated on a commercial silicon‐on‐insulator (SOI) substrate. The slot is implemented with a subwavelength grating (SWG) comprising holes fully etched down to the oxide cladding, thereby allowing single etch step fabrication. The device has been designed using an in‐house tool based on the Fourier Eigenmode Expansion Method. It has a footprint of only 3.5 μm x 23 μm and it exhibits a measured extinction ratio better than 15 dB within the full C‐band (1530 nm‒1570 nm). SWG engineered slots thus offer excellent perspectives for the practical realization of MMIs couplers with substantially reduced footprint yet with outstanding performance.
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