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(Peer-Reviewed) Three-dimensional integrated optical fiber devices: emergence and applications
Tingting Yuan 苑婷婷 ¹, Xiaotong Zhang 张晓彤 ², Shitai Yang 杨世泰 ³, Donghui Wang 王东辉 ³, Libo Yuan 苑立波 ³
¹ Future Technology College, Shenzhen University of Technology, Shenzhen 518118, China
中国 深圳 深圳职业技术大学未来技术学院
² School of Health and Environmental Engineering, Shenzhen University of Technology, Shenzhen 518118, China
中国 深圳 深圳技术大学健康与环境工程学院
³ School of Optoelectronic Engineering, Guilin University of Electronic Technology, Guilin 541004, China
中国 桂林 桂林电子科技大学光电工程学院
Opto-Electronic Technology , 2025-09-18
Abstract

This paper focuses on the utilization of quartz optical fibers as a foundational material for the miniaturization and integration of various optical paths and components into a single fiber, aiming to construct functional three-dimensional optical devices. It outlines the fundamental concepts and methodologies involved in creating such fiber-based integrated systems.

Key technologies and implementation strategies for realizing three-dimensional optical devices are systematically reviewed. Furthermore, the paper elaborates on approaches to enhance the functionality of these fiber devices through laser microprocessing and material integration techniques. These advancements offer compact and integrated solutions for applications in optical fiber communication and sensing.

Finally, from the perspective of facilitating scientific experiments on the light-matter interaction, the infinite possibilities of constructing "lab on/in optical fiber" were prospected. From the perspective of health and medical application demands, the clinical value and development potential of the new multifunctional optical fiber in the field of minimally invasive interventional surgery were explored.
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  • Phase matching sampling algorithm for sampling rate reduction in time division multiplexing optical fiber sensor system        Femtosecond laser micro/nano-processing via multiple pulses incubation
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