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Published on: September 22, 2017
Passively Q-Switched Yb:CALGO Laser Based on Mo:BiVO4 Absorber
Lina Zhao1,2, Ye Yuan1, Luyang Tong1
1College of Physics and Electronics, Center of Light Manipulations and Applications, Shandong Normal University, No 88, East Wenhua Road, Jinan 250014, China.
A novel molybdenum-doped bismuth vanadate (Mo:BiVO4) saturable absorber enabled a stable, passively Q-switched ytterbium-doped calcium gadolinium aluminum oxide (Yb:CaGdAlO4) laser. This Mo:BiVO4 saturable absorber shows promise for near-infrared laser applications.
Area of Science:
- Optics and Photonics
- Materials Science
- Laser Physics
Background:
- Passively Q-switched lasers are crucial for generating high-energy pulses.
- Developing efficient and stable saturable absorbers is key to advancing Q-switched laser performance.
- Molybdenum-doped bismuth vanadate (Mo:BiVO4) is explored as a potential material for optical applications.
Purpose of the Study:
- To demonstrate a stable, passively Q-switched laser using a Mo:BiVO4 saturable absorber.
- To characterize the nonlinear optical properties of Mo:BiVO4 for laser applications.
- To evaluate the performance of the Yb:CaGdAlO4 laser system.
Main Methods:
- Fabrication and characterization of Mo:BiVO4 nanoparticles using transmission electron microscopy, Raman spectroscopy, and linear absorption.
- Nonlinear transmission measurements of Mo:BiVO4 using a pulsed laser (30 ps, 1064 nm, 10 Hz).
- Integration of Mo:BiVO4 as a saturable absorber in a passively Q-switched Yb:CaGdAlO4 laser.
Main Results:
- Characterization confirmed the structure and morphology of the Mo:BiVO4 nanoparticles.
- The passively Q-switched laser achieved a maximum output power of 510 mW.
- The laser operated at a repetition rate of 87 kHz with a pulse width of 3.18 μs, yielding a single pulse energy of 5.8 μJ and a peak power of 1.84 W.
Conclusions:
- Mo:BiVO4-based saturable absorbers are effective for passively Q-switched lasers.
- The demonstrated laser system exhibits stable performance in the near-infrared region.
- Mo:BiVO4 is a promising candidate for saturable absorbers in near-infrared laser applications.
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