基于微双臂马赫-曾德尔干涉仪的近红外全光纤模式监测器
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1.南通大学 微电子学院(集成电路学院)(半导体器件与集成电路设计封测省高校重点实验室),江苏 南通 226019;2.北京大学长三角光电研究院,江苏 南通 226019;3.甬江实验室,浙江 宁波 315202

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中央引导地方科技发展资金(NO.2023ZY1023)和江苏省六大人才高峰计划(NO.KTHY-052)。


A near-infrared all-fiber mode monitor based on the mini-two-path Mach-Zehnder interferometer
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Affiliation:

1.School of Microelectronics and Integrated Circuits (Jiangsu Key Laboratory of Semi. Dev. & IC Design, Package and Test), Nantong University, Nantong226019, China;2.Peking University Yangtze Delta Institute of Optoelectronics, Nantong226019, China;3.Yongjiang Laboratory, Ningbo315202, China

Fund Project:

The central government guidance on local science and technology development funds (No. 2023ZY1023), and the Six Talent Peaks Project in Jiangsu Province (No. KTHY-052).

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    摘要:

    提出了一种基于微双臂马赫-曾德干涉仪(MTP-MZI)的新型近红外全光纤模式监测器。该MTP-MZI模式监测器通过光纤熔接机将无芯光纤(NCF)和单模光纤(SMF)熔接耦合,形成两条独立的厘米级光传输路径。NCF中近红外高阶模式相较于SMF中基模对曲率变化引起的能量泄露更敏感,因此曲率变化时,NCF中近红外高阶模式光泄露,导致MTP-MZI透射光谱发生变化。通过分析器件的曲率、透射光谱和空间频谱的关系,可以研究曲率变化过程中参与干涉的模式,以揭示光纤中近红外光的模式传输特性。验证实验中,通过在模式监测器前熔接空芯光纤 (HCF) 激发高阶模式,曲率变化时引入的高阶模式光泄露,透射光谱恢复至无弯曲且未接入HCF的状态。实验结果表明,MTP-MZI模式监测器能够监测外部引入的光纤模式,为近红外全光纤模态监测在光纤信息系统中的应用提供理论与实验依据。

    Abstract:

    A novel near-infrared all-fiber mode monitor based on a mini-two-path Mach-Zehnder interferometer (MTP-MZI) is proposed. The MTP-MZI mode monitor is created by fusing a section of no-core fiber (NCF) and a single-mode fiber (SMF) together with an optical fiber fusion splicer, establishing two distinct centimeter-level optical transmission paths. Since the high-order modes in NCF transmit near-infrared light more sensitively to curvature-induced energy leakage than the fundamental mode in SMF, the near-infrared high-order mode light leaks out of NCF when the curvature changes, causing the MTP-MZI transmission spectrum to change. By analyzing the relationship between the curvature, transmission spectrum, and spatial frequency spectrum, the modes involved in the interference can be studied, thereby revealing the mode transmission characteristics of near-infrared light in optical fibers. In the verification experiments, higher-order modes were excited by inserting a novel hollow-core fiber (HCF) into the MTP-MZI. When the curvature of the MTP-MZI changes, the near-infrared light high-order mode introduced into the device leaks out, causing the transmission spectrum to return to its original state before bending and before the HCF was spliced. The experimental results demonstrate that the MTP-MZI mode monitor can monitor the fiber modes introduced from the external environment, providing both theoretical and experimental foundations for near-infrared all-fiber mode monitoring in optical information systems.

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历史
  • 收稿日期:2024-09-10
  • 最后修改日期:2024-12-07
  • 录用日期:2024-10-17
  • 在线发布日期: 2024-12-03
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