High-energy all-fiber Er-doped femtosecond chirped-pulse amplification system seeded by nonlinear multimodal interference mode-locked fiber laser

被引:0
作者
Ahmad, H. [1 ,2 ,3 ]
Ithnahaini, M. U. M. [2 ]
Samion, M. Z. [2 ]
Zaini, M. K. A. [2 ]
Ismail, M. F. [2 ]
Bayang, L. [2 ]
Thambiratnam, K. [4 ]
Ortac, B. [5 ]
机构
[1] Univ Malaya, Fac Sci, Phys Dept, Kuala Lumpur 50603, Malaysia
[2] Univ Malaya, Photon Res Ctr, Kuala Lumpur 50603, Malaysia
[3] Univ Negeri Malang, Fac Math & Nat Sci, Dept Phys, Jalan Semarang 5, Malang 65145, Indonesia
[4] Int Islamic Univ Malaysia, Phys Dept, iPQC, Kulliyyah Sci, Kuantan 25200, Pahang, Malaysia
[5] Bilkent Univ, Inst Mat Sci Nanotechnol, Natl Nanotechnol Res Ctr UNAM, TR-06800 Ankara, Turkiye
关键词
Fiber laser; Mode-locking; Nonlinear multimodal interference; Chirped-pulse amplification; GRADED-INDEX FIBER; SATURABLE ABSORBER; COMPRESSION; SOLITON; COMB;
D O I
10.1016/j.yofte.2025.104245
中图分类号
TM [电工技术]; TN [电子技术、通信技术];
学科分类号
0808 ; 0809 ;
摘要
We report a high-energy femtosecond 1.5 mu m all-fiber source based on chirped-pulse amplification (CPA) of soliton pulses generated by a multimodal interference. The erbium-doped mode-locked fiber seed source utilizes a nonlinear multimodal interference-based saturable absorber designed with a single-multi-single (SMS) mode fiber configuration, which can generate femtosecond soliton pulses. A commercially available ultra-high numerical aperture fiber with normal group velocity dispersion stretches the pulses up to a duration of 5.14 ps. These stretched pulses are amplified in pre-and main amplification stages to achieve watts-level average output power. Additionally, single-mode fiber (SMF) effectively compresses the pulses back down to femtosecond duration. The CPA configuration provides output power, pulse width, and repetition rate of 1.34 W, 580 fs, and 14.7 MHz, respectively, measured at a central wavelength of 1563 nm. The CPA performance yields a pulse energy of 91.2 nJ and a peak power of 157 kW. Notably, the system exhibits stable output with a minimal average output power fluctuation of 0.08 dB, indicating a stable laser performance.
引用
收藏
页数:8
相关论文
共 59 条
[1]   Resonant nonlinearity in high-energy Er3+-fiber chirped-pulse-amplifiers [J].
Adel, P ;
Engelbrecht, M ;
Wandt, D ;
Fallnich, C .
OPTICS EXPRESS, 2005, 13 (25) :10260-10265
[3]   Generation of mode-locked erbium-doped fiber laser using MoSe2 as saturable absorber [J].
Ahmad, Harith ;
Aidit, Siti Nabila ;
Hassan, Nor Ahya ;
Ismail, Mohd Faizal ;
Tiu, Zian Cheak .
OPTICAL ENGINEERING, 2016, 55 (07)
[4]   Wavelength-Switchable Multiple Type Bound Solitons in a Passively Mode-Locked Er-Doped Fiber Laser [J].
Chen, Jikai ;
Wang, D. N. ;
Wang, Zhaokun .
IEEE PHOTONICS TECHNOLOGY LETTERS, 2020, 32 (22) :1447-1450
[5]   Single- and double-walled carbon nanotube based saturable absorbers for passive mode-locking of an erbium-doped fiber laser [J].
Cheng, Kuang-Nan ;
Lin, Yung-Hsiang ;
Lin, Gong-Ru .
LASER PHYSICS, 2013, 23 (04)
[6]   Revealing the nature of morphological changes in carbon nanotube-polymer saturable absorber under high-power laser irradiation [J].
Chernysheva, Maria ;
Al Araimi, Mohammed ;
Rance, Graham A. ;
Weston, Nicola J. ;
Shi, Baogui ;
Saied, Sayah ;
Sullivan, John L. ;
Marsh, Nicholas ;
Rozhin, Aleksey .
SCIENTIFIC REPORTS, 2018, 8
[7]   Er-doped mode-locked fiber lasers based on nonlinear polarization rotation and nonlinear multimode interference [J].
Dong, Zhipeng ;
Lin, Jiaqiang ;
Li, Hongxun ;
Zhang, Yimin ;
Gu, Chun ;
Yao, Peijun ;
Xu, Lixin .
OPTICS AND LASER TECHNOLOGY, 2020, 130
[8]   Multiple mode-locked regimes of an Er/Yb double-clad fiber laser based on NPR [J].
Duran-Sanchez, Manuel ;
Pottiez, Olivier ;
Posada-Ramirez, Berenice ;
Alvarez-Tamayo, Ricardo, I ;
Armas-Rivera, Ivan ;
Bello-Jimenez, Miguel ;
Garcia-Flores, Yasser A. ;
Montiel-Pina, E. ;
Ibarra-Escamilla, Baldemar .
JOURNAL OF OPTICS, 2021, 23 (04)
[9]   Nonlinear chirped pulse amplification for a 100-W-class GHz femtosecond all-fiber laser system at 1.5 μm [J].
Fan, Yiheng ;
Xiu, Hao ;
Lin, Wei ;
Chen, Xuewen ;
Hu, Xu ;
Wang, Wenlong ;
Wen, Junpeng ;
Tian, Hao ;
Hao, Molei ;
Wei, Chiyi ;
Wang, Luyi ;
Wei, Xiaoming ;
Yang, Zhongmin .
HIGH POWER LASER SCIENCE AND ENGINEERING, 2023, 11
[10]   Ultrafast fibre lasers [J].
Fermann, Martin E. ;
Hartl, Ingmar .
NATURE PHOTONICS, 2013, 7 (11) :868-874