Nano-CsxWO3: Ultra-broadband nonlinear optical modulator for near-infrared and mid-infrared ultrafast fiber lasers generation

被引:0
作者
Nan Li
Heng Jia
Ming Guo
Wenying Zhang
Ji Wang
Lijun Song
机构
[1] Jilin Engineering Normal University,Institute for Interdisciplinary Quantum Information Technology
[2] Jilin University,State Key Laboratory on Integrated Optoelectronics, College of Electronic Science and Engineering
[3] Peng Cheng Laboratory,undefined
来源
Nano Research | 2022年 / 15卷
关键词
Cs; WO; nanorods (NRs); nonlinear optical modulator; broadband saturable absorber; ultrafast fiber laser;
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学科分类号
摘要
Saturable absorbers (SAs) covering wavelengths from near-infrared (NIR) to mid-infrared (MIR) band are required for mode-locking and Q-switching lasers in muti-band wavelengths. Here, broadband nonlinear optical property was discovered in CsxWO3 nanorods (NRs), which as a novel non-stoichiometric SA for realizing ultrafast fiber lasers is first demonstrated. The CsxWO3 NRs based SA exhibited good mode-locking ability in three key wavelengths from NIR to MIR region, which is a key advantage over the most reported broadband SAs. The given CsxWO3 NRs showed a broadband optical absorption from 800 to 3,200 nm, and excellent SA properties at 1-µm, 1.5-µm, and 2-µm optical bands. Employing such SA, the ultrashort pulse lasers with a pulse duration/repetition rate of 530 fs/37.42 MHz at 1,567 nm and 5.6 ps/41.50 MHz at 1,965 nm from Er- and Tm-doped fiber lasers (TDFL) were realized separately. In addition, a stable mode locked operation at 1,030 nm with a repetition rate of 48.80 MHz was also achieved from Yb-doped fiber laser (YDFL). This work not only offers a new and reliable broadband mode locker for ultrafast laser generation, but also broadens the application of CsxWO3 materials in the field of nonlinear fiber optics.
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页码:4403 / 4410
页数:7
相关论文
共 410 条
  • [1] Keller U(2003)Recent developments in compact ultrafast lasers Nature 424 831-838
  • [2] Oktem B(2010)Soliton-similariton fibre laser Nat. Photonics 4 307-311
  • [3] Ülgüdür C(2014)Ultrafast and ultrashort: Some recent advances in pulsed lasers Opt. Photonics News 25 28-35
  • [4] Ilday F Ö(2013)Ultrafast fibre lasers Nat. Photonics 7 868-874
  • [5] Coffey V(2018)Several new directions for ultrafast fiber lasers [Invited] Opt. Express 26 9432-9463
  • [6] Fermann M E(2001)Micromachining bulk glass by use of femtosecond laser pulses with nanojoule energy Opt. Lett. 26 93-95
  • [7] Hartl I(2010)Ultrafast stretched-pulse fiber laser mode-locked by carbon nanotubes Nano Res. 3 404-411
  • [8] Fu W(2014)Nonlinear absorption of SWNT film and its effects to the operation state of pulsed fiber laser Opt. Express 22 17227-17235
  • [9] Wright L G(2012)Passively Q-switching induced by gold nanocrystals Appl. Phys. Lett. 101 151122-3083
  • [10] Sidorenko P(2013)Passively mode-locking induced by gold nanorods in erbium-doped fiber lasers Appl. Phys. Lett 103 041105-810