• Optoelectronics Letters
  • Vol. 21, Issue 1, 7 (2025)
Shakir AL-HITI Ahmed and Hiba HASSAN
DOI: 10.1007/s11801-025-3283-x Cite this Article
AL-HITI Ahmed Shakir, HASSAN Hiba. Nanosecond pulse and dual-wavelength Q-switched 1.5 μm fiber laser using MAX phase Cr2TiAlC2 saturable absorber[J]. Optoelectronics Letters, 2025, 21(1): 7 Copy Citation Text show less
References

[1] LI S, YIN Y, OUYANG Q, et al. Nanosecond passively Q-switched fibre laser using a NiS2 based saturable absorber[J]. Optics express, 2019, 27(14): 19843-19851.

[2] PEDRUZZI E, SILVA L C B, LEAL-JUNIOR A G, et al. Generation of a multi-wavelength Brillouin erbium fiber laser with low threshold in multiple frequency spacing configurations[J]. Optical fiber technology, 2022, 69: 102832.

[3] LV Z, YANG Z, LI F, et al. SESAM mode-locked all-polarization-maintaining fiber linear cavity ytterbium laser source with spectral filter as pulse shaper[J]. Laser physics, 2018, 28(12): 125103.

[4] SOBON G, SOTOR J, ABRAMSKI K M. All-polarization maintaining femtosecond Er-doped fiber laser mode-locked by graphene saturable absorber[J]. Laser physics letters, 2012, 9(8): 581.

[5] LI X, WU K, SUN Z, et al. Single-wall carbon nanotubes and graphene oxide-based saturable absorbers for low phase noise mode-locked fiber lasers[J]. Scientific reports, 2016, 6: 25266.

[6] LI J, LUO H, ZHAI B, et al. Black phosphorus: a two-dimension saturable absorption material for mid-infrared Q-switched and mode-locked fiber lasers[J]. Scientific reports, 2016, 6: 30361.

[7] JHON Y I, LEE J, JHON Y M, et al. Topological insulators for mode-locking of 2-m fiber lasers[J]. IEEE journal of selected topics in quantum electronics, 2018, 24(5): 1-8.

[8] LI L, PANG L, WANG R, et al. Ternary transition metal dichalcogenides for high power vector dissipative soliton ultrafast fiber laser[J]. Laser & photonics reviews, 2022, 16(2): 2100255.

[9] AL-HITI A S, APSARI R, YASIN M, et al. Nanosecond Q-switched pulse generation using poly (3,4ethylenedioxythiophene): poly (4-styrenesulfonate) thin film as saturable absorber[J]. Infrared physics & technology., 2021, 116: 103788.

[10] AL-HITI A S, YASIN M, NAJM M M, et al. Femtosecond mode-locked 1.5 m fiber laser based on PEDOT: PSS as saturable absorber[J]. Optics communications, 2023: 129926.

[11] AL-HITI A S, YASIN M, HARUN S W. MAX phase V4AlC3 for generating Q-switched pulses in 2 m region[J]. Optik, 2023, 288: 171148.

[12] AL-HITI A S, YASIN M, HARUN S W. Nanosecond Q-switched laser with PEDOT: PSS saturable absorber[J]. Appied optics, 2022, 61(6): 1292-1299.

[13] AL-HITI A S, YASIN M, HARUN S W. Poly(3,4-ethylenedioxythiophene): poly (styrenesulfonate) spin-coated onto polyvinyl alcohol film as saturable absorber for generating Q-switched laser at 1.5 m region[J]. Optical fiber technology, 2022, 68: 102763.

[14] KOBTSEV S M. Artificial saturable absorbers for ultrafast fibre lasers[J]. Optical fiber technology, 2022, 68: 102764.

[15] BARSOUM M W. The MN+ 1AXN phases: a new class of solids: thermodynamically stable nanolaminates[J]. Progress in solid state chemistry, 2000, 28(1-4): 201-281.

[16] HOFFMAN E N, VINSON D W, SINDELAR R L, et al. MAX phase carbides and nitrides: properties for future nuclear power plant in-core applications and neutron transmutation analysis[J]. Nuclear engineering and design, 2012, 244: 17-24.

[17] LIU Z, WU E, WANG J, et al. Crystal structure and formation mechanism of (Cr2/3Ti1/3)3AlC2 MAX phase[J]. Acta materialia, 2014, 73: 186-193.

[18] LIU Z, YANG J, QIAN Y, et al. High temperature oxidation behavior of quaternary ordered (Cr2/3Ti1/3)3AlC2-based MAX ceramic[J]. Corrosion science, 2021, 183: 109317.

[19] LI X, WANG S, WU G, et al. Oxidation and hot corrosion behaviors of MAX-phase Ti3SiC2, Ti2AlC, Cr2AlC[J]. Ceramics international, 2022, 48(18): 26618-26628.

[20] NOOR S, AHMAD B A, ROSOL A H A, et al. Dual-wavelength Q-switched erbium-doped fiber laser using an SMF-MMF-SMF structure and graphene oxide[J]. Optoelectronics letters, 2022, 18(11): 668-672.

[21] JASEM I N, ABDULLAH H H, JALAL A M. Dual-wavelength passively Q-switched erbium-doped fiber laser incorporating calcium carbonate nanoparticles as saturable absorber[J]. Journal of nanotechnology, 2023.

[22] LI G, HE J, YAN B, et al. Dual-wavelength passively Q-switched Er-doped fiber laser based on a MoSSe saturable absorber[J]. OSA continuum, 2019, 2(1): 192-200.

[23] LIU L, ZHENG Z, ZHAO X, et al. Dual-wavelength passively Q-switched erbium doped fiber laser based on an SWNT saturable absorber[J]. Optics communications, 2013, 294: 267-270.

[24] ZUIKAFLY S N F, AHMAD F, IBRAHIM M H, et al. Dual-wavelength passively Q-switched erbium-doped fiber laser with MWCNTs slurry as saturable absorber[J]. Photonics letters of Poland, 2016, 8(4): 98-100.

[25] CHEN S, LU B, WEN Z, et al. Single/dual-wavelength switchable and tunable passively Q-switched erbium-doped fiber laser[J]. Infrared physics & technology, 2020, 111: 103519.

AL-HITI Ahmed Shakir, HASSAN Hiba. Nanosecond pulse and dual-wavelength Q-switched 1.5 μm fiber laser using MAX phase Cr2TiAlC2 saturable absorber[J]. Optoelectronics Letters, 2025, 21(1): 7
Download Citation