用于硅波导和光纤之间有效光耦合的绝热光纤锥

IF 0.1 Q4 OPTICS
Gyeongho Son, Jiwon Choi, Jeong Youngjae, Kyoungsik Yu
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引用次数: 0

摘要

在这项研究中,我们报道了一种基于湿蚀刻的绝热光纤锥(OFTs)的制造方法,并描述了它们的绝热性和HE11模式在1550 nm波长下的演变。制备的系统的轮廓很好地满足绝热特性,从蚀刻的OFT的远场图中可以看出,在整个锥体中没有高阶模式耦合,基本的HE11模式保持不变。此外,测量的远场方向图与模拟结果吻合较好。所提出的绝热OFTs可应用于许多光子应用,特别是光纤芯片封装。数值模拟结果表明,基于自制的绝热OFT结构,光传输到反向锥形硅波导的空间尺寸公差较大,1 dB的多余损耗为~60 μm(硅波导角为1°),插入损耗小于0.4 dB(硅波导角为4°)。所提出的绝热耦合器在0和c波段上显示了超宽带耦合效率。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Adiabatic Optical-fiber Tapers for Efficient Light Coupling between Silicon Waveguides and Optical Fibers
In this study we report a wet-etching-based fabrication method for adiabatic optical-fiber tapers (OFTs), and describe their adiabaticity and HE11 mode evolution at a wavelength of 1550 nm. The profile of the fabricated system satisfies the adiabaticity properties well, and the far-field pattern from the etched OFT shows that the fundamental HE11 mode is maintained without a higher-order mode coupling throughout the tapers. In addition, the measured far-field pattern agrees well with the simulated result. The proposed adiabatic OFTs can be applied to a number of photonic applications, especially fiber-chip packages. Based on the fabricated adiabatic OFT structures, the optical transmission to the inversely tapered silicon waveguide shows large spatialdimensional tolerances for 1 dB excess loss of ~60 μm (silicon waveguide angle of 1°) and insertion loss of less than 0.4 dB (silicon waveguide angle of 4°), from the numerical simulation. The proposed adiabatic coupler shows the ultrabroadband coupling efficiency over the Oand C-bands.
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