- 1.J. Zhang, R. Wang, S. Fu*, Q. Sheng*, W. Xia, L. Zhang, W. Shi*, and J. Yao, "Erbium-doped ZBLAN fiber laser pumped at 1.7 µm for emission at 2.8 µm," Opt. Lett., 47(15), 3684-3687 (2022).
- 2.L. Zhang, Q. Sheng*, L. Chen, J. Zhang, S. Fu, Q. Fang, Y. Wang*, W. Shi*, and J. Yao, "215 mW single-frequency Tm-doped fiber laser at 2.05μm based on Tm/Ho codoped fiber saturable absorber," Opt. Lett., (2022). http://doi.org/10.1364/OL.463202
- 3.C. Shi, H. Tian, S. Fu, Q. Sheng*, Z. Shi, P. Jiang, W. Shi*, and J. Yao, "High-energy single-frequency pulsed fiber MOPA at 1064 nm based on a hybrid active-fiber," Opt. Express 30(9), 15575-15582 (2022).
- 4.Q. Sheng, A. Wang, Y. Ma*, S. Wang, M. Wang, Z. Shi, J. Liu, S. Fu, W. Shi*, J. Yao, and T. Omatsu, "Intracavity spherical aberration for selective generation of single-transverse-mode Laguerre-Gaussian output with order up to 95," PhotoniX 3, 4 (2022).
- 5.J. Zhang, Q. Sheng*, L. Zhang, C. Shi, S. Sun, W. Shi*, and J. Yao, "2.56W single-frequency all-fiber oscillator at 1720 nm," Advanced Photonic Research, 3(2), 2100256 (2022).
- 6.L. Zhang, J. Zhang, Q. Sheng*, S. Fu, Y. Li, C. Shi, W. Shi*, and J. Yao, " Intracavity tandemly-pumped and gain-switched Tm-doped fiber laser at 1.7 m," Journal of Lightwave Technology, 40(13), 4373-4378 (2022).
- 7.L. Zhang, J. Zhang, Q. Sheng, S. Fu, W. Shi*, and J. Yao, "High-efficiency Thulium-doped fiber laser at 1.7 μm," Optics & Laser Technology, 152, 108180 (2022).
- 8.J. Liu, A. Wang, Q. Sheng*, Y. Qi, S. Wang, M. Wang, D. Xu, S. Fu, W. Shi*, and J. Yao, "Large-range alignment-free distributed-cavity laser based on an improved multi-lens retroreflector," Chin. Opt. Lett. 20(3), 031407 (2022).
- 9.M. Wang#, Y. Ma#, Q. Sheng*, X. He, J. Liu, W. Shi*, J. Yao, and T. Omatsu, "Laguerre-Gaussian beam generation via enhanced intracavity spherical aberration," Opt. Express, 29(17), 27783-27790 (2021).
- 10.L. Zhang#, J. Zhang#, Q. Sheng*, C. Shi, W. Shi*, and J. Yao, "Watt-level 1.7-μm single-frequency thulium-doped fiber oscillator," Opt. Express, 29(17), 27048-27056 (2021).
- 11.S. Zhang, S. Sun, Q. Sheng, W. Shi*, Z. Yan, H. Tian, and J. Yao, "Polarization-Maintaining Performance of Solid-Core Anti-Resonant Fiber With Nested Circular Tubes in 3 μm Wavelength," J. Lightwave Technol. 40, 1137-1143 (2022)
- 12.L. Zhang#, J. Zhang#, Q. Sheng*, Y. Li, C. Shi, W. Shi*, and J. Yao, "1.7-μm Tm-doped fiber laser intracavity-pumped by an erbium/ytterbium-codoped fiber laser," Opt. Express, 29(16), 25280-25289 (2021). Editor’s Pick.
- 13.J. Zhang, Q. Sheng*, L. Zhang, C. Shi, S. Sun, X. Bai, W. Shi*, and J. Yao, "Single-frequency 1.7-μm Tm-doped fiber laser with optical bistability of both power and longitudinal mode behavior," Opt. Express, 29(14), 21409-21417 (2021).
- 14.Q. Sheng, M. Wang, H. Ma, Yue Qi, J. Liu, D. Xu, W. Shi, and J. Yao, "Continuous-wave long-distributed-cavity laser using cat-eye retroreflectors," Opt. Express, 29(21), 34269-34277 (2021).
- 15.C. Shi, H. Tian, Q. Sheng*, W. Shi*, Q. Fang, S. Sun, J. Zhang, X. Deng, J. Yao, "High-power single-frequency pulsed fiber MOPA via SPM suppression based on a triangular pulse," Results Phys., 28, 104594 (2021).
- 16.C. Shi, Q. Sheng*, S. Fu, S. Sun, J. Zhang, W. Shi*, and J. Yao, "Power scaling and spectral linewidth suppression of hybrid Brillouin/thulium fiber laser," Opt. Express, 28(3), 2948-2955 (2020).
- 17.L. Zhang, J. Zhang, Q. Sheng*, S. Sun, C. Shi, S. Fu, X. Bai, Q. Fang, W. Shi*, and J. Yao, "Efficient multi-watt 1720 nm ring-cavity Tm-doped fiber laser," Opt. Express, 28(25), 37910-37918 (2020).
- 18.J. Yu, J. Zhang, Q. Sheng*, W. Shi*, C. Shi, Q. Fang, and J. Yao, "All-fiber CW optical parametric oscillator tuned from 1642.5 to 1655.4 nm by a low-loss SMS filter," Results in Physics, 17, 103136 (2020).
- 19.K. Zhong, W. Shi*, D. Xu, P. Liu, Y. Wang, J. Mei, C. Yan, S. Fu, and J. Yao, "Optically pumped terahertz sources [Invited]," Sci. China Technol. Sc., 60(12), 1801-1818 (2017).
- 20.S. Fu, W. Shi*, Q. Sheng, G. Shi, H. Zhang, X. Bai, and J. Yao, "Compact Hundred-mW 2 μm Single-Frequency Thulium-Doped Silica Fiber Laser, " IEEE Photonic. Tech. L., 29(11), 853-856 (2017).
- 21.S. Fu, W. Shi, Y. Feng, L. Zhang, Z. Yang, S. Xu, X. Zhu, R. A. Norwood, and N. Peyghambarian, "Review of recent progress on single-frequency fiber lasers [Invited]," J. Opt. Soc. Am. B, 34(3), A49-A62 (2017).
- 22.J. Mei, K. Zhong*, M. Wang, Y. Liu, D. Xu, W. Shi*, Y. Wang, J. Yao, R. A. Norwood, and N. Peyghambarian, “Widely-tunable high-repetition-rate terahertz generation in GaSe with a compact dual-wavelength KTP OPO around 2 μm,” Opt. Express, 24(20), 23368-23375 (2016)
- 23.Q. Fang, Y. Xu, S. Fu, and W. Shi*, “Single-frequency distributed Bragg reflector Nd doped silica fiber laser at 930 nm,” Opt. Lett., 41(8), 1829-1832 (2016).
- 24.S. Fu, G. Shi, Q. Sheng, W. Shi*, X. Zhu, J. Yao, R. A. Norwood, and N. Peyghambarian, “Dual-wavelength fiber laser operating above 2 μm based on cascaded single-mode-multimode-single-mode fiber structures,” Opt. Express, 24(11), 11282-11289 (2016).
- 25.X. Bai, Q. Sheng*, H. Zhang, S. Fu, W. Shi*, and J. Yao, “High-power all-fiber single-frequency Erbium–Ytterbium co-doped fiber master oscillator power amplifier,” IEEE Photonics J., 7(6), 7103106 (2015).
- 26.S. Fu, W. Shi*, J. Lin, Q. Fang, Q. Sheng, H. Zhang, J. Wen, and J. Yao, “Single-frequency fiber laser at 1950 nm based on thulium-doped silica fiber,” Opt. Lett., 40(22), 5283-5286 (2015).
- 27.S. Fu, Q. Sheng, X. Zhu, W. Shi*, J. Yao, G. Shi, R. A. Norwood, and N. Peyghambarian, “Passive Q-switching of an all-fiber laser induced by the Kerr effect of multimode interference,” Opt. Express, 23(13), 17255-17262 (2015).
- 28.W. Shi*, Q. Fang, X. Zhu, R. A. Norwood, and N. Peyghambarian, “Fiber lasers and their applications [Invited],” Appl. Opt., 53(28), 6554-6568 (2014).
- 29.Q. Fang, Y. Qin, B. Wang, and W. Shi*, “230 W average-power all-fiber-based actively Q-switched fiber master oscillator–power amplifier,” Applied optics, 52(27), 6744-6747, (2013).
- 30.X. Zhu, W. Shi, J. Zong, et al., “976 nm single-frequency distributed Bragg reflector fiber laser,” Optics Letters,37(20):4167-4169, (2012).
- 31.R. Zhou, W. Shi*, E. Petersen, et al., “Transform-Limited, Injection Seeded, Q-Switched, Ring Cavity Fiber Laser,” Journal of Lightwave Technology, 30(16): 2589–2595, (2012).
- 32.Q. Fang, W. Shi*, K. Kieu, et al., “High power and high energy monolithic single frequency 2 μm nanosecond pulsed fiber laser by using large core Tm-doped germanate fibers: Experiment and Modeling,” Optics Express, 20(15): 16410-16420, (2012).
- 33.Q. Fang, W. Shi*, E. Petersen, et al., “Half-mJ all fiber based single frequency nanosecond pulsed fiber laser at 2 μm,” Photonics Technology Letters, 24(5): 353-355, (2012).
- 34.E. Petersen, W. Shi*, A. Chavez-Pirson, et al., “High peak-power single frequency pulses using multiple stage, large core phosphate fibers and pre-shaped pulses,” Applied Optics, 51(5): 531-534, (2012).
- 35.W. Shi*, E. Petersen, D. T. Nguyen, et al., “220 μJ monolithic single-frequency Q-switched fiber laser at 2 μm by using highly Tm-doped germanate fibers,” Optics Letters, 36(18): 3575-3577, (2011).
- 36.E. Petersen, W. Shi*, A. Chavez-Pirson, et al., “Efficient parametric terahertz generation in quasi-phase-matched GaP through cavity enhanced difference-frequency generation,” Applied Physics Letters, 98(13): 121119-121121, (2011).
- 37.W. Shi*, E. Petersen, D. T. Nguyen, et al., “Kilowatt-level stimulated-Brillouin-scattering-threshold monolithic transform-limited 100 ns pulsed fiber laser at 1530 nm,” Optics Letters, 35(14): 2418-2420, (2010).
- 38.E. Petersen, W.Shi*, D. T. Nguyen, et al., “Enhanced terahertz source based on external cavity difference-frequency generation using monolithic single-frequency pulsed fiber lasers,” Optics Letters, 35(13): 2170-2172, (2010).
- 39.W. Shi*, E. Petersen, M. A. Leigh, et al., “High SBS-threshold single-mode single-frequency monolithic pulsed fiber laser in the C-band,” Optics Express, 17(10): 8237-8245, (2009).
- 40.W. Shi*, M. A. Leigh, J. Zong, et al., “High power all fiber-based narrow linewidth single-mode fiber laser pulses in the C-band and frequency conversion to THz generation,” IEEE Journal of Selected Topics in Quantum Electronics, 15(2): 377-384, (2009).
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