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Sulaiman Wadi Harun

Researcher at University of Malaya

Publications -  1170
Citations -  13374

Sulaiman Wadi Harun is an academic researcher from University of Malaya. The author has contributed to research in topics: Fiber laser & Saturable absorption. The author has an hindex of 44, co-authored 1107 publications receiving 10844 citations. Previous affiliations of Sulaiman Wadi Harun include Airlangga University & Peninsular Malaysia.

Papers
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Gain and noise performances of an L-band EDFA utilizing a ring laser cavity with fiber Bragg grating

TL;DR: In this paper, the performances of an L-band EDFA utilizing a ring laser cavity is demonstrated using a fiber Bragg grating (FBG), arranged to propagate in opposition to the amplifier signal by a pair of circulators, to provide laser feedback.
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Application of Fiber Bragg Grating Sensor coated with Polyaniline as an optical Sensor for chloroform detection

TL;DR: In this article, a fiber Bragg Grating (FBG) sensor was designed as a sensing device in chloroform detection using aniline (Ani) as a monomer and dioctyl sodium sulfosuccinate (AOT) as dopant.
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Two-stage S-band erbium-doped fiber amplifier using a depressed-cladding fiber

TL;DR: In this paper, a two-stage short-wavelength-band erbium-doped fiber amplifier (S-band EDFA) is demonstrated using a depressed-cladding erbinium-Doped fiber (EDF) with a fundamental-mode cutoff wavelength of about 1525 nm.
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Microsecond pulse erbium-doped fiber laser using WS2 deposited on D-shaped fiber fabricated by polishing wheel technique

TL;DR: In this paper, a stable Q-switching pulse train output centered at 1561 nm was demonstrated by implementing D-shaped fiber deposited tungsten disulphide (WS2) as a saturable absorber in erbium-doped fiber laser.
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Gain and Noise Figure Improvements in Double Pass L-band EDFA using a Band-pass Filter

TL;DR: In this paper, a double-pass long wavelength band erbium-doped fiber amplifier (L-band EDFA) configuration with improved gain and noise figure was demonstrated by placing a band-pass filter in the output end of the EDF.