Nonlinear optical response of niobium telluride and its application for demonstrating pulsed fiber lasers
Niobium telluride (NbTe2), a kind of few-layer two-dimensional (2D) transition metal dichalcogenides (TMDs) material, has been theoretically predicted with nonlinear absorption properties and excellent optical response. Herein, we experimentally demonstrated an Er-doped fiber (EDF) laser based NbTe2...
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Published in | Journal of Materiomics Vol. 10; no. 2; pp. 355 - 365 |
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Main Authors | , , , , , , , , , |
Format | Journal Article |
Language | English |
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Elsevier B.V
01.03.2024
Elsevier |
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Abstract | Niobium telluride (NbTe2), a kind of few-layer two-dimensional (2D) transition metal dichalcogenides (TMDs) material, has been theoretically predicted with nonlinear absorption properties and excellent optical response. Herein, we experimentally demonstrated an Er-doped fiber (EDF) laser based NbTe2 as saturable absorber (SA). Few-layer NbTe2 nanosheets were successfully prepared by adopting the commonly used liquid-phase exfoliation (LPE) method. The nonlinear optical response of highly stable few-layer NbTe2 was investigated through an open-aperture Z-scan laser measurement, the nonlinear absorption coefficient was 2.45 × 10−11 m/W. Both Q-switched and mode-locked operation centered at 1 559 nm were recorded based on NbTe2 SA. The pulse duration was varied from 4.88 μs to 1.75 μs, and the adjustable range of repetition frequency is changed from 44.01 kHz to 64.12 kHz in passively Q-switched operation. Furthermore, a constant repetition rate of 5.33 MHz and pulse width of 2.67 ps were observed in mode-locked operation. Our experimental results fully reveal the nonlinear optical properties of NbTe2 used in pulsed fiber lasers and broaden its ultrafast applications in the optics field.
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•NbTe2 as saturable absorber with optical responses are prepared by LPE method.•Mode-locked and Q-switched operations are demonstrated by adjusting the polarization state and net dispersion.•The nonlinear absorption coefficient was investigated through an open-aperture Z-scan laser measurement.•Theoretical simulation proves that the band gap value of NbTe2 body structure is zero. |
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AbstractList | Niobium telluride (NbTe2), a kind of few-layer two-dimensional (2D) transition metal dichalcogenides (TMDs) material, has been theoretically predicted with nonlinear absorption properties and excellent optical response. Herein, we experimentally demonstrated an Er-doped fiber (EDF) laser based NbTe2 as saturable absorber (SA). Few-layer NbTe2 nanosheets were successfully prepared by adopting the commonly used liquid-phase exfoliation (LPE) method. The nonlinear optical response of highly stable few-layer NbTe2 was investigated through an open-aperture Z-scan laser measurement, the nonlinear absorption coefficient was 2.45 × 10−11 m/W. Both Q-switched and mode-locked operation centered at 1 559 nm were recorded based on NbTe2 SA. The pulse duration was varied from 4.88 μs to 1.75 μs, and the adjustable range of repetition frequency is changed from 44.01 kHz to 64.12 kHz in passively Q-switched operation. Furthermore, a constant repetition rate of 5.33 MHz and pulse width of 2.67 ps were observed in mode-locked operation. Our experimental results fully reveal the nonlinear optical properties of NbTe2 used in pulsed fiber lasers and broaden its ultrafast applications in the optics field. Niobium telluride (NbTe2), a kind of few-layer two-dimensional (2D) transition metal dichalcogenides (TMDs) material, has been theoretically predicted with nonlinear absorption properties and excellent optical response. Herein, we experimentally demonstrated an Er-doped fiber (EDF) laser based NbTe2 as saturable absorber (SA). Few-layer NbTe2 nanosheets were successfully prepared by adopting the commonly used liquid-phase exfoliation (LPE) method. The nonlinear optical response of highly stable few-layer NbTe2 was investigated through an open-aperture Z-scan laser measurement, the nonlinear absorption coefficient was 2.45 × 10−11 m/W. Both Q-switched and mode-locked operation centered at 1 559 nm were recorded based on NbTe2 SA. The pulse duration was varied from 4.88 μs to 1.75 μs, and the adjustable range of repetition frequency is changed from 44.01 kHz to 64.12 kHz in passively Q-switched operation. Furthermore, a constant repetition rate of 5.33 MHz and pulse width of 2.67 ps were observed in mode-locked operation. Our experimental results fully reveal the nonlinear optical properties of NbTe2 used in pulsed fiber lasers and broaden its ultrafast applications in the optics field. [Display omitted] •NbTe2 as saturable absorber with optical responses are prepared by LPE method.•Mode-locked and Q-switched operations are demonstrated by adjusting the polarization state and net dispersion.•The nonlinear absorption coefficient was investigated through an open-aperture Z-scan laser measurement.•Theoretical simulation proves that the band gap value of NbTe2 body structure is zero. |
Author | Wageh, S. Zhang, Huanian Zhang, Yule Al-Ghamdi, Ahmed A. Zhang, Han Zou, Xiaofeng Li, Dengwang Si, Shuhao Shang, Xinxin Li, Tuo |
Author_xml | – sequence: 1 givenname: Xinxin surname: Shang fullname: Shang, Xinxin organization: Shandong Province Key Laboratory of Medical Physics and Image Processing Technology, Shandong Provincial Key Laboratory of Optics and Photonic Device, School of Physics and Electronics, Shandong Normal University, Jinan, 250014, China – sequence: 2 givenname: Yule surname: Zhang fullname: Zhang, Yule organization: Institute of Microscale Optoelectronics, College of Physics and Optoelectronic Engineering, Shenzhen University, Shenzhen, 518060, China – sequence: 3 givenname: Tuo surname: Li fullname: Li, Tuo organization: Shandong Yunhai Guochuang Cloud Computing Equipment Industry Innovation Co., Ltd., Jinan, Shandong, China – sequence: 4 givenname: Huanian surname: Zhang fullname: Zhang, Huanian organization: School of Physics and Optoelectronic Engineering, Shandong University of Technology, Zibo, 255049, China – sequence: 5 givenname: Xiaofeng surname: Zou fullname: Zou, Xiaofeng organization: Shandong Yunhai Guochuang Cloud Computing Equipment Industry Innovation Co., Ltd., Jinan, Shandong, China – sequence: 6 givenname: S. surname: Wageh fullname: Wageh, S. organization: Department of Physics, Faculty of Science, King Abdulaziz University, Jeddah, 21589, Saudi Arabia – sequence: 7 givenname: Ahmed A. surname: Al-Ghamdi fullname: Al-Ghamdi, Ahmed A. organization: Department of Physics, Faculty of Science, King Abdulaziz University, Jeddah, 21589, Saudi Arabia – sequence: 8 givenname: Han surname: Zhang fullname: Zhang, Han email: hzhang@szu.edu.cn organization: Institute of Microscale Optoelectronics, College of Physics and Optoelectronic Engineering, Shenzhen University, Shenzhen, 518060, China – sequence: 9 givenname: Shuhao surname: Si fullname: Si, Shuhao email: sish@sdnu.edu.cn organization: Shandong Province Key Laboratory of Medical Physics and Image Processing Technology, Shandong Provincial Key Laboratory of Optics and Photonic Device, School of Physics and Electronics, Shandong Normal University, Jinan, 250014, China – sequence: 10 givenname: Dengwang surname: Li fullname: Li, Dengwang email: dengwang@sdnu.edu.cn organization: Shandong Province Key Laboratory of Medical Physics and Image Processing Technology, Shandong Provincial Key Laboratory of Optics and Photonic Device, School of Physics and Electronics, Shandong Normal University, Jinan, 250014, China |
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Keywords | Niobium telluride Z-scan Fiber laser Mode-locked pulse Saturable absorber |
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Title | Nonlinear optical response of niobium telluride and its application for demonstrating pulsed fiber lasers |
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