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A 1.0-µm pulsed generation in ytterbium-doped fiber laser with gadolinium oxide as a saturable absorber

Ramlan, N. A. A. and Yusoff, R. A. M. and Kasim, N. and Jafry, A. A. A. and Aziz, M. S. and Johari, A. R. (2021) A 1.0-µm pulsed generation in ytterbium-doped fiber laser with gadolinium oxide as a saturable absorber. Optics and Laser Technology, 141 (NA). p. 107149. ISSN 0030-3992

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Official URL: http://dx.doi.org/10.1016/j.optlastec.2021.107149

Abstract

A passively Q-switched and mode-locked laser was successfully demonstrated, the saturable absorber based on Gadolinium oxide was inserted into the ytterbium-doped fiber laser to generate pulses at the 1.0 µm region. By adjusting the pump power of the laser to 146.46 mW, the laser resonator generates a Q-switched pulse at the center wavelength of 1033.84 nm. The maximum achievable pump power of 175.83 mW has produced a 6.93 µs pulse width, 71.43 kHz repetition rate, and 6.23 nJ pulse energy. Later, the incorporation of a 200 m single-mode fiber has triggered a self-started mode-locked laser. The pulse centered at the peak wavelength of 1033.54 nm. The generated pulse was in the range of 146.46 mW to 183.18 mW with a repetition rate of 0.98 MHz. These results proved an outstanding non-linear optical property of Gadolinium oxide, which offers its compatibility with a near-infrared photonics device.

Item Type:Article
Uncontrolled Keywords:gadolinium oxide, mode-locked, q-switched
Subjects:Q Science > QC Physics
Divisions:Science
ID Code:96586
Deposited By: Narimah Nawil
Deposited On:28 Jul 2022 07:08
Last Modified:28 Jul 2022 07:08

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