Optical Fiber Lasers: Advances in Design, Fabrication and Applications

A special issue of Photonics (ISSN 2304-6732). This special issue belongs to the section "Lasers, Light Sources and Sensors".

Deadline for manuscript submissions: 21 April 2026 | Viewed by 572

Special Issue Editors


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Guest Editor
School of Physical Science and Engineering, Beijing Jiaotong University, Beijing 100044, China
Interests: mode-locked lasers; fiber lasers

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Guest Editor
State Key Laboratory of Opto-Electronic Information Acquisition and Protection Technology, Anhui university, Hefei 230601, China
Interests: ultrafast lasers; nonlinear optics

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Guest Editor
School of Physical Science and Engineering, Beijing Jiaotong University, Beijing 100044, China
Interests: fiber lasers; nonlinear optics; mid-infrared lasers
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Special Issue Information

Dear Colleagues,

Fiber lasers have rapidly developed in recent decades, offering benefits such as high power, high energy, narrow pulse width, narrow linewidth, and wide wavelength, among others. They have contributed to significant progress in the fields of communication, precision measurement, sensing, laser surgery, laser biophotonics, and additive and subtractive manufacturing, to name a few, due to their excellent conversion efficiency, size, heat dissipation, and other characteristics. Optical fiber lasers have become a powerful tool to support the development and progression of multiple industries. However, there is still considerable room for improvement in the design, fabrication, and application of fiber lasers. Discussion and research in this regard will further enhance the performance of lasers and expand their range of application fields.

This Special Issue welcomes submissions on optical fiber lasers, including advances in design, fabrication, and applications. Topics of interest include, but are not limited to, the following:

  • Ultrafast lasers;
  • Mode-locked/Q-switched fiber lasers;
  • Fiber laser design;
  • High-power lasers;
  • Mid-infrared fiber laser;
  • Narrow-linewidth fiber lasers;
  • Tunable fiber lasers;
  • Rare-earth doping;
  • Photonic crystal fibers;
  • Laser cutting/welding;
  • Medical laser systems;
  • Laser processing.

Dr. Huaiwei Zhang
Dr. Zhiqiang Wang
Dr. Xinyang Su
Guest Editors

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Keywords

  • fiber lasers
  • fiber laser applications
  • optical fiber

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Published Papers (1 paper)

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Research

10 pages, 2130 KB  
Article
Multiple Dissipative Solitons in an Erbium-Doped Fiber Laser Mode-Locked with Ethylene Glycol
by Wenyan Zhang, Huijie Jiang, Lei Zheng, Nannan Liu, Kun Yang and Li Zhan
Photonics 2025, 12(11), 1113; https://doi.org/10.3390/photonics12111113 - 11 Nov 2025
Viewed by 318
Abstract
We report the experimental observation of dissipative solitons (DS) in an erbium-doped fiber laser mode-locked with ethylene glycol. Stable individual dissipative solitons with the fundamental repetition frequency of 35.17 MHz are obtained. The spectral profiles exhibit dynamic variation, adopting either a parabolic-like or [...] Read more.
We report the experimental observation of dissipative solitons (DS) in an erbium-doped fiber laser mode-locked with ethylene glycol. Stable individual dissipative solitons with the fundamental repetition frequency of 35.17 MHz are obtained. The spectral profiles exhibit dynamic variation, adopting either a parabolic-like or an M-like shape at varying pump levels. Moreover, through increasing the pump power and/or appropriately regulating the polarization controller, multiple dissipative solitons, including soliton pairs and soliton triplet states have also been achieved. The generation mechanism is attributed to the phenomenon of peak clamping effect. This is the first demonstration of a dissipative soliton laser utilizing ethylene glycol as a saturable absorber. It is anticipated that this demonstration will spur further attention on organic liquid SAs and potentially extend significant influence for the application of ultrafast lasers. Full article
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