Title of article :
Passively Q-switched Erbium-doped Fiber Laser Based on Iron Disulfide as a Saturable Absorber
Author/Authors :
ahmed, n. universiti teknologi mara cawangan terengganu, kampus dungun - school of electrical engineering, Kuala Dungun, Malaysia , zulkipli, n.f. university of malaya - photonics engineering laboratory, department of electrical engineering, Kuala Lumpur, malaysia , omar, s. universiti teknologi mara cawangan terengganu, kampus dungun - school of electrical engineering, Kuala Dungun, Malaysia , jusoh, z. universiti teknologi mara cawangan terengganu, kampus dungun - school of electrical engineering, Kuala Dungun, Malaysia , rahman, h.a. universiti teknologi mara (uitm) - school of electrical engineering, Shah Alam, Malaysia , musa, b. universiti teknologi mara cawangan terengganu, kampus dungun - school of electrical engineering, Kuala Dungun, Malaysia , harun, s.w. university of malaya - photonics engineering laboratory, department of electrical engineering, Kuala Lumpur, Malaysia
From page :
130
To page :
134
Abstract :
This work highlights the demonstration of a passively Q-switched pulse laser with iron disulfide (FeS2) as a saturable absorber in near-infrared region. The FeS2 saturable absorber is fabricated using liquid exfoliation method. A small piece of the FeS2-SA film is incorporated into the erbium-doped fiber laser ring cavity resulting in stable repetition rate from 80.4 kHz to 88.5 kHz. The laser delivered a pulse duration that decreases from 12.43 μs to 11.3 μs. By tuning the power pump from 125.2 mW to 166.4 mW, maximum output power and pulse energy are recorded at 2.2 mW and 24.8 nJ respectively. Therefore, this work reveals that FeS2 has good nonlinear saturable absorption properties to produce a stable pulse at 1559.8 nm central wavelength.
Keywords :
erbium , doped fiber laser , iron sulfide , Q , switching , saturable absorber
Journal title :
journal of electrical and electronic systems research
Journal title :
journal of electrical and electronic systems research
Record number :
2705100
Link To Document :
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