Gallium-Doped Zinc Oxide nanoparticles as saturable absorber for ultrafast fiber laser operating 1560 nm

D.Y. Tang, H. Zhang, L.M. Zhao, X. Wu, Observation of high-order polarization-locked vector solitons in a fiber laser. Phys. Rev. Lett. 101(15), 153904 (2008)

Article  ADS  Google Scholar 

X. Liu, Y. Cui, D. Han, X. Yao, Sun. Distributed ultrafast fibre laser. Sci. Rep. 5(1), 9101 (2015)

Article  Google Scholar 

P. Grelu, N. Akhmediev, Dissipative solitons for mode-locked lasers. Nat. Photonics. 6(2), 84–92 (2012)

Article  ADS  Google Scholar 

B.R. Washburn et al., Fiber-laser-based frequency comb with a tunable repetition rate. Opt. Express. 12(20), 4999–5004 (2004)

Article  ADS  Google Scholar 

T. Shoji et al., Glaucomatous changes in lamina pores shape within the lamina cribrosa using wide bandwidth, femtosecond mode-locked laser OCT. Plos One. 12(7), e0181675 (2017)

Article  Google Scholar 

A.S. Al-Hiti, M. Yasin, Z.C. Tiu, S.W. Harun, Soliton picosecond pulse generation with a spin-coated PEDOT: PSS thin film. J. Lumin. 247, 118879 (2022)

Article  Google Scholar 

A.S. Al-Hiti, Z.C. Tiu, M. Yasin, S.W. Harun, Ultrafast fiber laser at 1570 Nm based on organic material as saturable absorber. Sci. Rep. 12(1), 1–10 (2022)

Article  Google Scholar 

Z. Chen et al., Improved optical damage threshold graphene Oxide/SiO2 absorber fabricated by sol-gel technique for mode-locked erbium-doped fiber lasers. Carbon. 144, 737–744 (2019)

Article  Google Scholar 

L. Hou et al., Sub-200 femtosecond dispersion-managed soliton ytterbium-doped fiber laser based on carbon nanotubes saturable absorber. Opt. Express. 26(7), 9063–9070 (2018)

Article  ADS  Google Scholar 

S. Kobtsev et al., Ultrafast all-fibre laser mode-locked by polymer-free carbon nanotube film. Opt. Express. 24(25), 28768–28773 (2016)

Article  ADS  Google Scholar 

J. Boguslawski et al., Graphene oxide paper as a saturable absorber for Er-and Tm-doped fiber lasers. Photonics Res. 3(4), 119–124 (2015)

Article  MathSciNet  Google Scholar 

A.S. Al-Hiti, M. Yasin, S.W. Harun, Nanosecond Q-switched laser with PEDOT: PSS saturable absorber. Appl. Opt. 61(6), 1292–1299 (2022)

Article  ADS  Google Scholar 

S.W. Harun et al., A Q-switched erbium-doped fiber laser with a carbon nanotube based saturable absorber. Chin. Phys. Lett. 29(11), 114202 (2012)

Article  ADS  Google Scholar 

J. Li et al., Black phosphorus: a two-dimension saturable absorption material for mid-infrared Q-switched and mode-locked fiber lasers. Sci. Rep. 6(1), 1–11 (2016)

MathSciNet  Google Scholar 

L. Li, L. Pang, Q. Zhao, W. Liu, Y. Su, VSe 2 nanosheets for ultrafast fiber lasers. J. Mater. Chem. C 8(3), 1104–1109 (2020)

Article  Google Scholar 

M.M. Najm et al., Ultra-short pulse generating in erbium-doped fiber laser cavity with 8-Hydroxyquinolino cadmium chloride hydrate (8-HQCdCl2H2O) saturable absorber. J. Mod. Opt. 68(5), 237–245 (2021)

Article  ADS  Google Scholar 

W. Song et al., Black phosphorus-film with an improved dropcasting method for large pulse energy at 1.5 µm. in.: 2018 Asia Communications and Photonics Conference (ACP) 1–3 (IEEE, 2018)

H. Zhang, Q. Bao, D. Tang, L. Zhao, K. Loh, Large energy soliton erbium-doped fiber laser with a graphene-polymer composite mode locker. Appl. Phys. Lett. 95(14), 141103 (2009). https://doi.org/10.1063/1.3244206

Article  ADS  Google Scholar 

L. Li, L. Pang, Y. Wang, W. Liu, WxNb(1– x)Se2 nanosheets for ultrafast photonics. Nanoscale. 13(4), 2511–2518 (2021). https://doi.org/10.1039/D0NR08580D

Article  Google Scholar 

L. Li, L. Pang, Q. Zhao, Y. Wang, W. Liu, Niobium disulfide as a new saturable absorber for an ultrafast fiber laser. Nanoscale. 12(7), 4537–4543 (2020). https://doi.org/10.1039/C9NR10873D

Article  Google Scholar 

A.S. Al-Hiti, M. Yasin, S.W. Harun, Soliton ultrafast fiber laser with V4AlC3 MAX phase in 2 Μm region. Opt. Fiber. Technol. 81, 103585 (2023)

Article  Google Scholar 

A.S. Al-Hiti, M. Yasin, S.W. Harun, MAX phase V4AlC3 for generating Q-switched pulses in 2 Μm region. Optik. 288, 171148 (2023)

Article  Google Scholar 

A.S. Al-Hiti et al., Nanosecond passively Q-switched fiber laser in the 1.5 Μm region using turmeric saturable absorber. Opt. Laser Technol. 139, 106971 (2021)

Article  Google Scholar 

A.S. Al-Hiti, R. Apsari, M. Yasin, S.W. Harun, Nanosecond Q-switched pulse generation using Poly (3, 4 ethylenedioxythiophene): Poly (4-styrenesulfonate) thin film as saturable absorber. Infrared Phys. Tech. 116, 103788 (2021). https://doi.org/10.1016/j.infrared.2021.103788

Article  Google Scholar 

A.S. Al-Hiti, H. Hassan, M. Yasin, S.W. Harun, Passively Q-switched 2 Μm fiber laser with WO3 saturable absorber. Opt. Fiber Technol. 75, 103193 (2023). https://doi.org/10.1016/j.yofte.2022.103193

Article  Google Scholar 

A.S. Al-Hiti, M.F.A. Rahman, S.W. Harun, P. Yupapin, Yasin. Holmium oxide thin film as a saturable absorber for generating Q-switched and mode-locked erbium-doped fiber lasers. Opt. Fiber Technol. 52, 101996 (2019)

Article  Google Scholar 

N.F. Zulkipli et al., Generation of Q-switched and mode-locked pulses with Eu2O3 saturable absorber. Opt. Laser Technol. 127, 106163 (2020)

Article  Google Scholar 

M.F. Baharom, M.F.A. Rahman, A.A. Latiff, R. Apsari, S.W. Harun, Inducing Q-switching operation at 1-micron all-fiber laser via lutetium oxide film saturable absorber. Optik. 219, 165267 (2020)

Article  Google Scholar 

S.J. Pearton, D.P. Norton, K. Ip, Y.W. Heo, Steiner. Recent advances in processing of ZnO. J. Vacuum Sci. Technol. B: Microelectron. Nanometer Struct. Process. Meas. Phenom. 22(3), 932–948 (2004)

Article  ADS  Google Scholar 

C.-Y. Tsay, W.-C. Lee, Effect of dopants on the structural, optical and electrical properties of sol–gel derived ZnO semiconductor thin films. Curr. Appl. Phys. 13(1), 60–65 (2013)

Article  ADS  Google Scholar 

S. Horzum et al., Monitoring the characteristic properties of Ga-doped ZnO by Raman spectroscopy and atomic scale calculations. J. Mol. Struct. 1180, 505–511 (2019)

Article  ADS  Google Scholar 

C. Pérez León, L. Kador, B. Peng, M. Thelakkat, Influence of the solvent on the surface-enhanced Raman spectra of ruthenium (II) bipyridyl complexes. J. Phys. Chem. B 109(12), 5783–5789 (2005)

Article  Google Scholar 

G. Katumba, B.W. Mwakikunga, T.R. Mothibinyane, FTIR and Raman spectroscopy of carbon nanoparticles in SiO 2, ZnO and NiO matrices. Nanoscale Res. Lett. 3, 421–426 (2008)

Article  ADS  Google Scholar 

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