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Cheng Xiau San
Cheng Xiau San
University of Wollongong Malaysia
Verified email at uow.edu.my
Title
Cited by
Cited by
Year
Review of Erbium-doped fiber amplifier
AW Naji, BA Hamida, XS Cheng, MA Mahdi, S Harun, S Khan, ...
International Journal of the Physical Sciences 6 (20), 4674-4689, 2011
882011
Wide-band bismuth-based erbium-doped fiber amplifier with a flat-gain characteristic
XS Cheng, R Parvizi, H Ahmad, SW Harun
IEEE Photonics Journal 1 (5), 259-264, 2009
632009
S-band Brillouin erbium fibre laser
SW Harun, XS Cheng, NK Saat, H Ahmad
Electronics Letters 41 (4), 174-176, 2005
612005
Experimental and theoretical studies on a double-pass C-band bismuth-based erbium-doped fiber amplifier
SW Harun, R Parvizi, XS Cheng, A Parvizi, SD Emami, H Arof, H Ahmad
Optics & Laser Technology 42 (5), 790-793, 2010
352010
Enhanced triple-pass hybrid erbium doped fiber amplifier using distribution pumping scheme in a dual-stage configuration
AA Almukhtar, AA Al-Azzawi, XS Cheng, PH Reddy, A Dhar, MC Paul, ...
Optik 204, 164191, 2020
202020
Molybdenum disulfide saturable absorber for eye-safe mode-locked fiber laser generation
AA Latiff, XS Cheng, MFM Rusdi, MC Paul, SW Harun, H Ahmad
Journal of Nonlinear Optical Physics & Materials 27 (01), 1850010, 2018
162018
67 cm long bismuth‐based erbium doped fiber amplifier with wideband operation
XS Cheng, BA Hamida, AW Naji, H Ahmad, SW Harun
Laser Physics Letters 8 (11), 814-817, 2011
152011
Flat-gain and wide-band partial double-pass erbium co-doped fiber amplifier with hybrid gain medium
AA Almukhtar, AA Al-Azzawi, BA Ahmad, XS Cheng, PH Reddy, A Dhar, ...
Optical Fiber Technology 52, 101952, 2019
142019
Self-excited brillouin–erbium fiber laser for DWDM applications
SW Harun, XS Cheng, P Poopalan, H Ahmad
Optics & Laser Technology 39 (1), 94-97, 2007
112007
Self‐generating Brillouin fiber laser using highly nonlinear hafnium bismuth erbium‐doped fiber
A Ahmad, XS Cheng, MC Paul, A Dhar, S Das, H Ahmad, SW Harun
Microwave and Optical Technology Letters 61 (6), 1651-1655, 2019
102019
The effect of 980 nm and 1480 nm pumping on the performance of newly Hafnium Bismuth Erbium-doped fiber amplifier
AA Almukhtar, AA Al-Azzawi, XS Cheng, MC Paul, H Ahmad, SW Harun
Journal of Physics: Conference Series 1151 (1), 012013, 2019
92019
Investigation of the Brillouin effect in highly nonlinear hafnium bismuth erbium doped fiber
A Ahmad, XS Cheng, MC Paul, A Dhar, S Das, H Ahmad, SW Harun
Microwave and Optical Technology Letters 61 (1), 173-177, 2019
92019
Wideband and compact erbium‐doped fiber amplifier using parallel double‐pass configuration
BA Hamida, XS Cheng, SW Harun, AW Naji, H Arof, S Khan, W Alkhateeb, ...
Microwave and Optical Technology Letters 54 (3), 629-631, 2012
92012
Broadband ASE source using bismuth‐based erbium‐doped fibers in double‐pass set‐up
XS Cheng, H Ahmad, SW Harun
Microwave and Optical Technology Letters 52 (7), 1636-1638, 2010
92010
Compact and wide-band bismuth-based erbium-doped fibre amplifier based on two-stage and double-pass approaches
XS Cheng, BA Hamida, AW Naji, H Arof, H Ahmad, SW Harun
IET optoelectronics 6 (3), 127-130, 2012
62012
Optical amplifier with flat-gain and wideband operation utilizing highly concentrated erbium-doped fibers
BA Hamida, XS Cheng, AW Naji, H Ahmad, W Al-Khateeb, S Khan, ...
Journal of Nonlinear Optical Physics & Materials 21 (01), 1250005, 2012
62012
Highly efficient short length Bismuth-based erbium-doped fiber amplifier
XS Cheng, BA Hamida, H Arof, H Ahmad, SW Harun
Laser Physics 21, 1793-1796, 2011
62011
Effects of pumping scheme and double-propagation on the performance of ASE source using dual-stage Bismuth-based Erbium-doped fiber
H Ahmad, XS Cheng, MR Tamjis, SW Harun
Journal of Electromagnetic Waves and Applications 24 (2-3), 373-381, 2010
62010
An efficient S-band brillouin erbium fiber laser with additional EDFA
SW Harun, XS Cheng, H Ahmad
Optics & Laser Technology 39 (3), 616-618, 2007
62007
S-band Brillouin/erbium fiber laser for DWDM application
SW Harun, CX San, H Ahmad
Journal of Nonlinear Optical Physics & Materials 15 (03), 309-313, 2006
62006
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