• Photonics Research
  • Vol. 5, Issue 5, 461 (2017)
X. Liu1, K. Yang1、2、3、*, S. Zhao1, T. Li1, W. Qiao1, H. Zhang2, B. Zhang2, J. He2, J. Bian3, L. Zheng4, L. Su4, and J. Xu5
Author Affiliations
  • 1School of Information Science and Engineering, and Shandong Provincial Key Laboratory of Laser Technology and Application, Shandong University, Jinan 250100, China
  • 2State Key Laboratory of Crystal Material, Shandong University, Jinan 250100, China
  • 3State Key Laboratory of Pulsed Power Laser Technology, Hefei 230031, China
  • 4Key Laboratory of Transparent and Opto-functional Inorganic Materials, Artificial Crystal Research Center, Shanghai Institute of Ceramics, Chinese Academy of Sciences, Shanghai 201899, China
  • 5School of Physics Science and Engineering, Institute for Advanced Study, Tongji University, Shanghai 200092, China
  • show less
    DOI: 10.1364/PRJ.5.000461 Cite this Article Set citation alerts
    X. Liu, K. Yang, S. Zhao, T. Li, W. Qiao, H. Zhang, B. Zhang, J. He, J. Bian, L. Zheng, L. Su, J. Xu. High-power passively Q-switched 2 μm all-solid-state laser based on a Bi2Te3 saturable absorber[J]. Photonics Research, 2017, 5(5): 461 Copy Citation Text show less
    References

    [1] N. M. Fried, K. E. Murray. High-power thulium fiber laser ablation of urinary tissues at 1.94 μm. J. Endourol., 19, 25-31(2005).

    [2] S. W. Henderson, P. J. M. Suni, C. P. Hale, S. M. Hannon, J. R. Magee, D. L. Bruns, E. H. Yuen. Coherent laser radar at 2  μm using solid-state lasers. IEEE Trans. Geosci. Remote Sens., 31, 4-15(1993).

    [3] K. Scholle, S. Lamrini, P. Koopmann, P. Fuhrberg. 2  μm laser sources and their possible applications. Frontiers in Guided Wave Optics and Optoelectronics, 471-500(2010).

    [4] G. I. Petrov, V. V. Yakovlev, N. I. Minkovski. High-energy short-pulse diode-pumped Nd: YVO4 laser and its applications for material sciences and biomedical imaging. IEEE Conference on Lasers and Electro-Optics (CLEO), 2(2003).

    [5] A. Y. Chamorovskiy, A. V. Marakulin, A. S. Kurkov, T. Leinonen, O. G. Okhotnikov. High-repetition-rate Q-switched holmium fiber laser. IEEE Photon. J., 4, 679-683(2012).

    [6] M. Jung, J. Koo, Y. M. Chang, P. Debnath, Y.-W. Song, J. H. Lee. An all fiberized, 1.89-μm Q-switched laser employing carbon nanotube evanescent field interaction. Laser Phys. Lett., 9, 669-673(2012).

    [7] Q. Bao, H. Zhang, Y. Wang, Z. Ni, Y. Yan, Z. X. Shen, K. P. Loh, D. Y. Tang. Atomic-layer graphene as a saturable absorber for ultrafast pulsed lasers. Adv. Funct. Mater., 19, 3077-3083(2009).

    [8] Y. M. Chang, H. Kim, J. H. Lee, Y.-W. Song. Multilayered graphene efficiently formed by mechanical exfoliation for nonlinear saturable absorbers in fiber mode-locked lasers. Appl. Phys. Lett., 97, 211102(2010).

    [9] J.-L. Xu, X.-L. Li, Y.-Z. Wu, X.-P. Hao, J.-L. He, K.-J. Yang. Graphene saturable absorber mirror for ultra-fast-pulse solid-state laser. Opt. Lett., 36, 1948-1950(2011).

    [10] Y.-Y. Lin, P. Lee, J.-L. Xu, C.-L. Wu, C.-M. Chou, C.-Y. Tu, M. M. C. Chou, C.-K. Lee. High-pulse-energy topological insulator Bi2Te3 based passive Q-switched solid-state laser. IEEE Photon. J., 8, 1-10(2016).

    [11] J. E. Moore. The birth of topological insulators. Nature, 464, 194-198(2010).

    [12] J. Lee, M. Jung, J. Koo, C. Chi, J. H. Lee. Passively Q-switched 1.89-μm fiber laser using a bulk-structured Bi2Te3 topological insulator. IEEE J. Sel. Top. Quantum Electron., 21, 264-269(2015).

    [13] F. Bernard, H. Zhang, S. Gorza, P. Emplit. Towards mode-locked fiber laser using topological insulators. Advanced Photonics Congress, NTh1A.5(2012).

    [14] J. Lee, J. Koo, Y. M. Jhon, J. H. Lee. A femtosecond pulse erbium fiber laser incorporating a saturable absorber based on bulk-structured Bi2Te3 topological insulator. Opt. Express, 22, 6165-6173(2014).

    [15] C. Lu, J. Lee, J. Koo, J. Luo, Y. Ji, J. H. Lee, K. Kitayama, H. Tam, K. Xu, P. Ghiggino, N. Wada. Thulium-Holmium-codoped, passively Q-switched fiber laser incorporating Bi2Te3 saturable absorber. Asia Communications and Photonics Conference, AM2C.4(2015).

    [16] N. H. M. Apandi, F. Ahmad, S. N. F. Zuikafly, M. H. Ibrahim, S. W. Harun. Bismuth (III) telluride (Bi2Te3) embedded in PVA as a passive saturable absorber in a 2 micron region. Photon. Lett. Poland, 8, 101-103(2016).

    [17] H. Yu, H. Zhang, Y. Wang, C. Zhao, B. Wang, S. Wen, H. Zhang, J. Wang. Topological insulator as an optical modulator for pulsed solid-state lasers. Laser Photon. Rev., 7, L77-L83(2013).

    [18] B. Wang, H. Yu, H. Zhang, C. Zhao, S. Wen, H. Zhang, J. Wang. Topological insulator simultaneously Q-switched dual-wavelength Nd:Lu2O3 laser. IEEE Photon. J., 6, 1-7(2014).

    [19] F. Lou, R. Zhao, J. He, Z. Jia, X. Su, Z. Wang, J. Hou, B. Zhang. Nanosecond-pulsed, dual-wavelength, passively Q-switched ytterbium-doped bulk laser based on few-layer MoS2 saturable absorber. Photon. Res., 3, A25-A29(2015).

    [20] Y.-J. Sun, C.-K. Lee, J.-L. Xu, Z.-J. Zhu, Y.-Q. Wang, S.-F. Gao, H.-P. Xia, Z.-Y. You, C.-Y. Tu. Passively Q-switched tri-wavelength Yb3+:GdAl3(BO3)4 solid-state laser with topological insulator Bi2Te3 as saturable absorber. Photon. Res., 3, A97-A101(2015).

    [21] B. Huang, P. Tang, J. Yi, G. Jiang, J. Liu, Y. Zou, C. Zhao, S. Wen. Resonantly pumped Er: YAG laser Q-switched by topological insulator nanosheets at 1617  nm. Opt. Mater.(2016).

    [22] Y. Cheng, J. Peng, B. Xu, H. Xu, Z. Cai, J. Weng. Passive Q-switching of Pr: LiYF 4 orange laser at 604 nm using topological insulators Bi2Se3 as saturable absorber. Opt. Laser Technol., 88, 275-279(2017).

    [23] X. Jiang, S. Gross, H. Zhang, Z. Guo, M. J. Withford, A. Fuerbach. Bismuth telluride topological insulator nanosheet saturable absorbers for q-switched mode-locked Tm: ZBLAN waveguide lasers. Annalen der Physik, 528, 543-550(2016).

    [24] C. Chi, J. Lee, J. Koo, H. J. Lee. All-normal-dispersion dissipative-soliton fiber laser at 1.06  μm using a bulk-structured Bi2Te3 topological insulator-deposited side-polished fiber. Laser Phys., 24, 105106(2014).

    [25] Y.-H. Lin, S.-F. Lin, Y.-C. Chi, C.-L. Wu, C.-H. Cheng, W.-H. Tseng, J.-H. He, C.-I. Wu, C.-K. Lee, G.-R. Lin. Using n-and p-type Bi2Te3 topological insulator nanoparticles to enable controlled femtosecond mode-locking of fiber lasers. ACS Photon., 2, 481-490(2015).

    [26] J. Li, H. Luo, L. Wang, C. Zhao, H. Zhang, H. Li, Y. Liu. 3-μm mid-infrared pulse generation using topological insulator as the saturable absorber. Opt. Lett., 40, 3659-3662(2015).

    [27] P. Li, G. Zhang, H. Zhang, C. Zhao, J. Chi, Z. Zhao, C. Yang, H. Hu, Y. Yao. Q-switched mode-locked Nd:YVO4 laser by topological insulator Bi2Te3 saturable absorber. IEEE Photon. Technol. Lett., 26, 1912-1915(2014).

    [28] J. Hou, B. Zhang, J. He, Z. Wang, F. Lou, J. Ning, R. Zhao, X. Su. Passively Q-switched 2 μm Tm:YAP laser based on graphene saturable absorber mirror. Appl. Opt., 53, 4968-4971(2014).

    [29] C. Luan, K. Yang, J. Zhao, S. Zhao, L. Song, T. Li, H. Chu, J. Qiao, C. Wang, Z. Li, S. Jiang, B. Man, L. Zheng. WS2 as a saturable absorber for Q-switched 2 micron lasers. Opt. Lett., 41, 3783-3786(2016).

    [30] L. C. Kong, G. Q. Xie, P. Yuan, L. J. Qian, S. X. Wang, H. H. Yu, H. J. Zhang. Passive Q-switching and Q-switched mode-locking operations of 2  μm Tm:CLNGG laser with MoS2saturable absorber mirror. Photon. Res., 3, A47-A50(2015).

    [31] H. Zhang, J. He, Z. Wang, J. Hou, B. Zhang, R. Zhao, K. Han, K. Yang, H. Nie, X. Sun. Dual-wavelength, passively Q-switched Tm:YAP laser with black phosphorus saturable absorber. Opt. Mater. Express, 6, 2328-2335(2016).

    CLP Journals

    [1] Cong Wang, Jie Liu, Han Zhang. Ultrafast pulse lasers based on two-dimensinal nanomaterials[J]. Acta Physica Sinica, 2019, 68(18): 188101-1

    [2] Bo Guo. 2D noncarbon materials-based nonlinear optical devices for ultrafast photonics [Invited][J]. Chinese Optics Letters, 2018, 16(2): 020004

    [3] Haizhou Huang, Jinhui Li, Jing Deng, Yan Ge, Huagang Liu, Jianhong Huang, Wen Weng, Wenxiong Lin. Passively Q-switched Tm/Ho composite laser[J]. Opto-Electronic Advances, 2020, 3(4): 190031-1

    [4] Tingting Zeng, Meiping Zhu, Yingjie Chai, Jingping Li, Jianda Shao. Dichroic laser mirrors with mixture layers and sandwich-like-structure interfaces[J]. Photonics Research, 2021, 9(2): 229

    [5] Jingjing Liu, Hao Huang, Feng Zhang, Zhen Zhang, Jie Liu, Han Zhang, Liangbi Su. Bismuth nanosheets as a Q-switcher for a mid-infrared erbium-doped SrF2 laser[J]. Photonics Research, 2018, 6(8): 762

    [6] Qian-Qian Hao, Meng-Yu Zong, Zhen Zhang, Hao Huang, Feng Zhang, Jie Liu, Dan-Hua Liu, Liang-Bi Su, Han Zhang. Bismuth nanosheets based saturable-absorption passively Q-switching mid-infrared single-crystal fiber laser [J]. Acta Physica Sinica, 2020, 69(18): 184205-1

    [7] Junpeng Qiao, Shengzhi Zhao, Kejian Yang, Wei-Heng Song, Wenchao Qiao, Chung-Lung Wu, Jia Zhao, Guiqiu Li, Dechun Li, Tao Li, Hong Liu, Chao-Kuei Lee. High-quality 2-μm Q-switched pulsed solid-state lasers using spin-coating-coreduction approach synthesized Bi2Te3 topological insulators[J]. Photonics Research, 2018, 6(4): 314

    X. Liu, K. Yang, S. Zhao, T. Li, W. Qiao, H. Zhang, B. Zhang, J. He, J. Bian, L. Zheng, L. Su, J. Xu. High-power passively Q-switched 2 μm all-solid-state laser based on a Bi2Te3 saturable absorber[J]. Photonics Research, 2017, 5(5): 461
    Download Citation