Multi-Tone Optical Source Generation for Applications in Next-Generation Passive Optical Networks using Photonic Structures

Andrés Felipe Calvo-Salcedo, Neil Guerrero-González, José A. Jaramillo-Villegas
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Abstract

This study presents the design and simulation of an integrated multi-carrier optical source with a 227 GHz bandwidth for passive optical network (PON) applications. The optical comb generation attained using a photonic structure known as a micro-ring resonator fabricated in silicon nitride (Si3N4) facilitates cost reduction when produced on a large scale. Additionally, the generated optical comb accomplishes non-uniform tones in terms of the optical signal-to-noise ratio (OSNR), which allows for the dynamic assignment of carriers to retainable customers as a function of the data rate and transmission distance requirements. The design and simulation demonstrate the generation of frequency combs with optical carriers in a range of 5-40 tones, an OSNR range of 20-80 dB, and a free spectral range (FSR) of 50-3 610 GHz. To achieve these features, a geometric design of the device is proposed, and its response to variations of input laser parameters is described. In summary, the device uses two optical micro-resonators with radii of 100 and 450 µm and controls the power and the tuning of laser parameters. The proposed method allows generating a deterministic and reliable path to the frequency combs. Finally, the characteristics of the obtained combs are tested to determine their potential use in PON transmissions.
基于光子结构的下一代无源光网络中多音光源的产生
本研究提出了一种用于无源光网络(PON)的集成多载波光源的设计与仿真,其带宽为227 GHz。利用氮化硅(Si3N4)制造的称为微环谐振器的光子结构实现的光学梳子生成有助于在大规模生产时降低成本。此外,生成的光学梳在光信噪比(OSNR)方面实现了非均匀色调,这允许根据数据速率和传输距离要求动态分配载波以保留客户。设计和仿真结果表明,可以产生5 ~ 40 tone的光载波频率梳,OSNR范围为20 ~ 80db, FSR范围为50 ~ 3610ghz。为了实现这些特性,提出了器件的几何设计,并描述了其对输入激光参数变化的响应。综上所述,该器件采用两个半径分别为100µm和450µm的光学微谐振器,控制激光器的功率和激光参数的调谐。所提出的方法允许生成确定性和可靠的频率梳路径。最后,测试得到的梳的特性,以确定它们在PON传输中的潜在用途。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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