Startseite Technik Performance signature for angular misalignment measurement of fiber to fiber connectors with minimum insertion loss and low distortion in optical fiber transceiver systems
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Performance signature for angular misalignment measurement of fiber to fiber connectors with minimum insertion loss and low distortion in optical fiber transceiver systems

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Veröffentlicht/Copyright: 10. Oktober 2024
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Abstract

This paper has demonstrated the performance signature of fiber to fiber connectors with minimum insertion loss and low distortion in optical fiber transceiver systems. Insertion loss is clarified against the lateral and longitudinal misalignment for single mode graded index fiber for various fiber core diameter. Insertion loss is clarified in relation to angular misalignment for joints in multimode step index silica doped optical fibers with numerical apertures variations. Total coupling signal loss efficiency is demonstrated versus the lateral and longitudinal misalignment for single mode graded index fiber for different fiber core diameter. As well as the coupling loss efficiency is studied versus angular misalignment for joints in multimode step index silica doped optical fibers with numerical apertures variations. Insertion loss is demonstrated versus numerical aperture variations for joints in multimode step index silica doped/germanium doped/plastic optical fibers with various degree angular misalignment variations.


Corresponding authors: Ramachandran Thandaiah Prabu, Department of ECE, Saveetha School of Engineering, Saveetha Institute of Medical and Technical Sciences, SIMATS, Saveetha University, Chennai, Tamil Nadu, India, E-mail: ; and Samir Hossam Fathi, Naser Institute of Engineering, Portsaid, Egypt, E-mail:

  1. Research ethics: Not applicable.

  2. Author contributions: The authors have accepted responsibility for the entire content of this manuscript and approved its submission.

  3. Conflict of interest: The authors state no conflict of interest

  4. Research funding: Not applicable

  5. Data availability: Not applicable.

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Received: 2024-07-31
Accepted: 2024-09-15
Published Online: 2024-10-10
Published in Print: 2025-10-27

© 2024 Walter de Gruyter GmbH, Berlin/Boston

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