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Hongkun Nie

Showing results (11-20 of 30) with videos related to

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Optics Express|October 19, 2017
Passively mode-locked 1.34 μm bulk laser based on few-layer black phosphorus saturable absorberXiaoli Sun, Hongkun Nie, Jingliang He, et al.
Optics Letters|May 23, 2023
Cascade MIR Ho:YLF laser at 2.1 µm and 2.9 µmShuai Ye, Xue Zhou, Shengjun Huang, et al.
Optics Express|November 22, 2024
High-efficiency 2.3 µm Tm:YLF laser based on 0.79 µm and 1.05 µm dual-wavelength pumping schemeXue Zhou, Jiatong Li, Shengjun Huang, et al.
Applied Optics|December 28, 2020
Generation of a square-shaped pulse in mode-locked fiber lasers with a microfiber-based few-layer Nb<sub>2</sub>C saturable absorberGuoru Li, Lingling Yang, Ruwei Zhao, et al.
Optics Letters|March 16, 2017
83.4  W, 17.69  kHz spectral bandwidth, continuous-wave, beam densely folded Innoslab amplifierJian Ning, Kezhen Han, Jingliang He, et al.
Optics Express|August 13, 2025
Large energy, narrow bandwidth 1550 nm picosecond polarization-maintaining fiber laserYongping Yao, Bo Yao, Daofa Sun, et al.
Optics Letters|February 16, 2017
Diode-end-pumped Ho, Pr:LiLuF<sub>4</sub> bulk laser at 2.95  μmHongkun Nie, Peixiong Zhang, Baitao Zhang, et al.
Optics Letters|March 1, 2018
Passively Q-switched mid-infrared laser pulse generation with gold nanospheres as a saturable absorberWenchao Duan, Hongkun Nie, Xiaoli Sun, et al.
Optics Letters|July 14, 2018
Few-layer TiSe<sub>2</sub> as a saturable absorber for nanosecond pulse generation in 2.95  μm bulk laserHongkun Nie, Xiaoli Sun, Baitao Zhang, et al.
Nanoscale|September 20, 2018
Broadband 1T-titanium selenide-based saturable absorbers for solid-state bulk lasersBingzheng Yan, Baitao Zhang, Hongkun Nie, et al.
Pageof 3

Showing results (11-20 of 30) with videos related to

Sort By:
Pageof 3
Optics Express|October 19, 2017
Passively mode-locked 1.34 μm bulk laser based on few-layer black phosphorus saturable absorberXiaoli Sun, Hongkun Nie, Jingliang He, et al.
Optics Letters|May 23, 2023
Cascade MIR Ho:YLF laser at 2.1 µm and 2.9 µmShuai Ye, Xue Zhou, Shengjun Huang, et al.
Optics Express|November 22, 2024
High-efficiency 2.3 µm Tm:YLF laser based on 0.79 µm and 1.05 µm dual-wavelength pumping schemeXue Zhou, Jiatong Li, Shengjun Huang, et al.
Applied Optics|December 28, 2020
Generation of a square-shaped pulse in mode-locked fiber lasers with a microfiber-based few-layer Nb<sub>2</sub>C saturable absorberGuoru Li, Lingling Yang, Ruwei Zhao, et al.
Optics Letters|March 16, 2017
83.4  W, 17.69  kHz spectral bandwidth, continuous-wave, beam densely folded Innoslab amplifierJian Ning, Kezhen Han, Jingliang He, et al.
Optics Express|August 13, 2025
Large energy, narrow bandwidth 1550 nm picosecond polarization-maintaining fiber laserYongping Yao, Bo Yao, Daofa Sun, et al.
Optics Letters|February 16, 2017
Diode-end-pumped Ho, Pr:LiLuF<sub>4</sub> bulk laser at 2.95  μmHongkun Nie, Peixiong Zhang, Baitao Zhang, et al.
Optics Letters|March 1, 2018
Passively Q-switched mid-infrared laser pulse generation with gold nanospheres as a saturable absorberWenchao Duan, Hongkun Nie, Xiaoli Sun, et al.
Optics Letters|July 14, 2018
Few-layer TiSe<sub>2</sub> as a saturable absorber for nanosecond pulse generation in 2.95  μm bulk laserHongkun Nie, Xiaoli Sun, Baitao Zhang, et al.
Nanoscale|September 20, 2018
Broadband 1T-titanium selenide-based saturable absorbers for solid-state bulk lasersBingzheng Yan, Baitao Zhang, Hongkun Nie, et al.
Pageof 3