Title :
Broadly Tunable and Low-Threshold Cr4+:YAG Crystal Fiber Laser
Author :
Dong-Yo Jheng ; Kuang-Yu Hsu ; Yen-Chun Liang ; Sheng-Lung Huang
Author_Institution :
Grad. Inst. of Photonics & Optoelectron., Nat. Taiwan Univ., Taipei, Taiwan
Abstract :
We demonstrate a Cr4+:YAG crystal fiber laser tunable from 1353 to 1509 nm using a birefringent filter and with a threshold pump power of 70 mW operating at room temperature. It was found that the coupling loss between the crystal fiber and the collimator due to lens aberration is critical to the fiber laser performance and can be reduced by choosing an aspheric lens with a short focal length. The crystal fiber gain was optimized by aligning the pump polarization to the crystal axis with the highest gain. The advantages of the crystal fiber compared to the bulk crystals include reduced pump threshold due to light confinement and better thermal dissipation due to high surface area-to-volume ratio. The temperature rise of the crystal fiber with a 400-mW incident peak pump power with a duty cycle of 5% was only 1.7 °C using passive cooling. This low-threshold crystal fiber laser is suitable for the application as a tunable seed laser for the power amplifier chain.
Keywords :
aspherical optics; birefringence; chromium; fibre lasers; laser tuning; lenses; optical collimators; optical fibre filters; optical fibre losses; optical focusing; optical pumping; Cr4+:YAG crystal fiber laser; YAG:Cr; aspheric lens; birefringent filter; collimator; coupling loss; focal length; laser tuning; passive cooling; power 400 mW; power 70 mW; power amplifier chain; pump polarization; surface area-to-volume ratio; thermal dissipation; threshold pump power; wavelength 13553 nm to 1509 nm; Cavity resonators; Crystals; Fiber lasers; Laser excitation; Laser tuning; Optical fiber polarization; Pump lasers; Solid-state lasers; crystalline materials; fiber lasers; laser tuning; optical coherence tomography;
Journal_Title :
Selected Topics in Quantum Electronics, IEEE Journal of
DOI :
10.1109/JSTQE.2014.2345559