Random lasing from optical fibers with phase separated glass cores
Author:
Funder
Joint Directed Energy Transition Office
U.S. Department of Defense
Publisher
The Optical Society
Subject
Atomic and Molecular Physics, and Optics
Reference33 articles.
1. Non-resonant feedback in lasers
2. Speckle-free laser imaging using random laser illumination
3. Multimode Random Fiber Laser for Speckle-Free Imaging
4. Long-distance fiber-optic point-sensing systems based on random fiber lasers
5. Ultra-Long Laser Systems for Remote Fiber Bragg Gratings Arrays Interrogation
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