Design and Characterization of Dispersion-Tailored Silicon Strip Waveguides toward Wideband Wavelength Conversion

IF 0.6 4区 工程技术 Q4 ENGINEERING, ELECTRICAL & ELECTRONIC IEICE Transactions on Electronics Pub Date : 2023-01-01 DOI:10.1587/transele.2022ocp0004
H. Muranaka, T. Kato, Shun Okada, Tokuharu Kimura, Yu Tanaka, Tsuyoshi Yamamoto, I. Sackey, G. Ronniger, R. Elschner, C. Schmidt-Langhorst, C. Schubert, T. Hoshida
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引用次数: 1

Abstract

SUMMARY One of cost-effective ways to increase the transmission capacity of current standard wavelength division multiplexing (WDM) transmission systems is to use a wavelength band other than the C-band to transmit in multi-band. We proposed the concept of multi-band system using wavelength conversion, which can simultaneously process signals over a wide wavelength range. All-optical wavelength conversion could be used to convert C-band WDM signals into other bands in a highly nonlinear fiber (HNLF) by four-wave mixing and allow to simultaneously transmit multiple WDM signals including other than the C-band, with only C-band transceivers. Wavelength conversion has been reported for various nonlinear waveguide materials other than HNLF. In such nonlinear materials, we noticed the possibility of wideband transmission by dispersion-tailored silicon-on-insulator (SOI) waveguides. Based on the CMOS process has high accuracy, it is expected that the chromatic dispersion fluctuation could be reduced in mass production. As a first step in the investigation of the broadness of wavelength conversion using SOI-based waveguides, we designed and fabricated dispersion-tailored 12 strip waveguides provided with an edge coupler at both ends. Each of the 12 waveguides having different widths and lengths and is connected to fibers via lensed fibers or by lenses. In order to characterize each waveguide, the pump-probe experimental setup was constructed using a tunable light source as pump and an unmodulated 96-ch C-band WDM test signal. Using this setup, we evaluate insertion loss, input power dependence, conversion bandwidth and conversion efficiency. We confirmed C-band test signal was converted to the S-band and the L-band using the same silicon waveguide with 3 dB conversion bandwidth over 100-nm. Furthermore, an increased design tolerance of at least 90 nm was confirmed for C-to-S conversion by shortening the waveguide length. It is confirmed that the wavelength converters using the nonlinear waveguide has sufficiently wide conversion bandwidth to enhance the multi-band WDM transmission system.
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面向宽带波长转换的色散定制硅条波导的设计与表征
提高当前标准波分复用(WDM)传输系统传输容量的一种经济有效的方法是使用c波段以外的一个波段进行多波段传输。我们提出了使用波长转换的多波段系统的概念,它可以同时处理宽波长范围内的信号。全光波长转换可以在高度非线性光纤(HNLF)中通过四波混频将c波段WDM信号转换为其他频段,并且允许同时传输除c波段以外的多个WDM信号,仅使用c波段收发器。除HNLF外,已有各种非线性波导材料的波长转换的报道。在这种非线性材料中,我们注意到通过色散定制的绝缘体上硅(SOI)波导实现宽带传输的可能性。由于CMOS工艺具有较高的精度,因此有望在量产时减小色散波动。作为研究基于soi的波导波长转换宽度的第一步,我们设计并制造了色散定制的12条波导,两端配有边缘耦合器。12个波导中的每一个都有不同的宽度和长度,并通过透镜光纤或透镜连接到光纤上。为了对每个波导进行表征,采用可调光源作为泵浦和96 ch无调制的c波段WDM测试信号,构建了泵浦-探针实验装置。利用这种设置,我们评估了插入损耗、输入功率依赖性、转换带宽和转换效率。我们确认使用相同的硅波导将c波段测试信号转换为s波段和l波段,转换带宽超过100 nm,为3 dB。此外,通过缩短波导长度,c - s转换的设计公差至少增加了90 nm。结果表明,采用非线性波导的波长转换器具有足够宽的转换带宽,可以提高多波段波分复用传输系统的性能。
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来源期刊
IEICE Transactions on Electronics
IEICE Transactions on Electronics 工程技术-工程:电子与电气
CiteScore
1.00
自引率
20.00%
发文量
79
审稿时长
3-6 weeks
期刊介绍: Currently, the IEICE has ten sections nationwide. Each section operates under the leadership of a section chief, four section secretaries and about 20 section councilors. Sections host lecture meetings, seminars and industrial tours, and carry out other activities. Topics: Integrated Circuits, Semiconductor Materials and Devices, Quantum Electronics, Opto-Electronics, Superconductive Electronics, Electronic Displays, Microwave and Millimeter Wave Technologies, Vacuum and Beam Technologies, Recording and Memory Technologies, Electromagnetic Theory.
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