光学
波导管
天线(收音机)
硅光子学
光束发散
波束波导天线
衍射效率
材料科学
硅
光电子学
栅栏
物理
天线孔径
辐射模式
光束直径
计算机科学
激光器
电信
激光束
作者
Pablo Ginel‐Moreno,Daniel Pereira-Martín,Abdelfettah Hadij‐ElHouati,Winnie N. Ye,Daniele Melati,Dan-Xia Xu,Siegfried Janz,Alejandro Ortega‐Moñux,J. Gonzalo Wangüemert‐Pérez,Robert Halir,Íñigo Molina‐Fernández,Jens H. Schmid,Pavel Cheben
出处
期刊:Optics Letters
[The Optical Society]
日期:2020-09-10
卷期号:45 (20): 5668-5668
被引量:29
摘要
Optical antennas are key components in optical phased arrays for light detection and ranging technology requiring long sensing range and high scanning resolution. To achieve a narrow beam width in the far-field region, antenna lengths of several millimeters or more are required. To date, such long antennas have been impossible to achieve in silicon waveguides because currently demonstrated technologies do not allow accurate control of grating strength. Here, we report on a new type of surface-emitting silicon waveguide with a dramatically increased antenna length of L=3.65mm. This is achieved by using a subwavelength metamaterial waveguide core evanescently coupled with radiative segments laterally separated from the core. This results in a far-field diffracted beam width of 0.025°, which is a record small beam divergence for a silicon photonics surface-emitting device. We also demonstrate that by using a design with L-shaped surface-emitting segments, the radiation efficiency of the antenna can be substantially increased compared to a conventional design, with an efficiency of 72% at the wavelength of 1550 nm.
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