研究员

陈玮冬

  • 职称:研究员
  • 学科:
  • 电子邮件:chenweidong@fjirsm.ac.cn
  • 研究方向:

    超快光学、非线性光学、激光物理

简介

陈玮冬,研究员,博士生导师。主要从事全固态激光系统中的激光物理与非线性光学现象的研究。主要包括基于稀土离子和过渡金属离子掺杂的新型激光晶体和非线性光学晶体的完整光学物理性能表征和应用;超短激光脉冲的产生、放大、传输及其非线性频率变换;空间结构性光场的产生、传输及其与物质互作用中的应用研究。

代表性论著

1. H. Y. Nie, Z. L. Lin, P. Loiko, H. J. Zeng, L. Zhang, Z. Lin, G. Z. Elabedine, X. Mateos, V. Petrov, G. Zhang, and Weidong. Chen*, "Diode-pumped Kerr-lens mode-locked Yb:MgWO4 laser," Optics Letters 2025, 50(3), 1049-1052.

2. Z. L. Lin, H. J. Zeng, Z. Pan, P. Loiko, V. Petrov, X. Mateos, G. Zhang, Weidong Chen*, “Kerr-lens mode-locking of an Yb:SALLO laser generating 25 fs pulses at 1090 nm”, Applied Physics Letters, 2024, 124(17), 171102.

3. Weidong Chen, L. Wang, I. B. Divliansky, V. Pasiskevicius, O. Mhibik, K. M. Moelster, A. Zukauskas, L. B. Glebov, and V. Petrov*, "Narrowband, intracavity-pumped, type-II BaGa2GeSe6 optical parametric oscillator," Optics Express, 2024, 32(2), 1728-1735.

4. H. J. Zeng, W. Z. Xue, R. T. Murray, C. Cui, L. Wang, Z. Pan, P. Loiko, X. Mateos, F. Yuan, G. Zhang, U. Griebner, V. Petrov, and Weidong Chen*, "In-band pumped Kerr-lens mode-locked Tm,Ho-codoped calcium aluminate laser," Optics Express, 2024, 32(9), 16083-16089.

5. Z. Q. Li, Z. L. Lin, H. J. Zeng, H. Y. Nie, G. Zhang, P. Zhang, W. Wu, Z. Chen, Z. Li, P. Loiko, S. Normani, X. Mateos, H. C. Liang, V. Petrov, and Weidong Chen*, "Diode-pumped Kerr-lens mode-locked ytterbium-doped compositional mixed calcium aluminate laser," Optics Express, 2024, 32(23), 40507-40513.

6. Z. Q. Li, Z. L. Lin, H. J. Zeng, H. Y. Nie, G. Zhang, F. Yu, X. Zhao, H. C. Liang, V. Petrov, P. Loiko, X. Mateos, G. Wu, and Weidong Chen*, "Continuous-wave and SESAM mode-locked operation of a Yb:YSr3(PO4)3 laser," Optics Express, 2024, 32(3), 3974-3979.

7. Z. L. Lin, P. Loiko, H. J. Zeng, W. Z. Xue, G. Zhang, S. Normani, P. Camy, V. Petrov, X. Mateos, H. Lin, H. Yu, H. Zhang, J. Liu, L. Wang, and Weidong Chen*, "Kerr-lens mode-locking of an Yb:CLNGG laser," Optics Express, 2023, 31(5), 8575-8585.

8. Weidong Chen*, Z. L. Lin, W. Z. Xue, H. J. Zeng, G. Zhang, P. Loiko, Y. Zhao, X. Xu, J. Xu, X. Mateos, H. Lin, L. Wang, and V. Petrov, "Kerr-lens mode-locked Yb:YAlO3 laser generating 24-fs pulses at 1085 nm," Optics Letters, 2022, 47(18), 4728-4731.

9. Z. L. Lin, W. Z. Xue, H. J. Zeng, G. Zhang, P. Zhang, Z. Chen, Z. Li, V. Petrov, P. Loiko, X. Mateos, H. Lin, L. Wang, and Weidong Chen*, "Kerr-lens mode-locked ytterbium-activated orthoaluminate laser," Optics Letters, 2022, 47(12), 3027-3030.

10. Y. Zhao, L. Wang, Weidong Chen*, P. Loiko, Y. Wang, Z. Pan, H. Yang, W. Jing, H. Huang, J. Liu, X. Mateos, Z. Wang, X. Xu, U. Griebner, and V. Petrov, "Kerr-lens mode-locked Tm-doped sesquioxide ceramic laser," Optics Letters, 2021, 46(14), 3428-3431.

11. L. Wang, Weidong Chen*, Y. Zhao, P. Loiko, X. Mateos, M. Guina, Z. Pan, M. Mero, U. Griebner, and V. Petrov, "Sub-50 fs pulse generation from a SESAM mode-locked Tm,Ho-codoped calcium aluminate laser," Optics Letters, 2021, 46(11), 2642-2645.

12. Z. L. Lin, H. J. Zeng, G. Zhang, W. Z. Xue, Z. Pan, H. Lin, P. Loiko, H. C. Liang, V. Petrov, X. Mateos, L. Wang, and Weidong Chen*, "Kerr-lens mode-locked Yb:SrLaAlO4 laser," Optics Express, 2021 29(26), 42837-42843.

13. Y. Zhao, L. Wang, Weidong Chen*, Y. Wang, J. Zhang, P. Liu, X. Xu, Y. Liu, D. Shen, J. E. Bae, T. G. Park, F. Rotermund, X. Mateos, P. Loiko, Z. Wang, X. Xu, J. Xu, M. Mero, U. Griebner, V. Petrov, "SWCNT-SA mode-locked Tm:LuYO3 ceramic laser delivering 8-optical-cycle pulses at 2.05 µm," Optics Letters, 2020, 45(2), 459-462.

14. L. Wang, Weidong Chen*, Y. Zhao, P. Loiko, X. Mateos, M. Guina, Z. Pan, M. Mero, U. Griebner, and V. Petrov, "Sub-50 fs pulse generation from a SESAM mode-locked Tm,Ho-codoped calcium aluminate laser," Optics Letters, 2021, 46(11), 2642-2645.

15. P. Loiko, M. Chen, J. M. Serres, M. Aguiló, F. Díaz, H. Lin, G. Zhang, L. Zhang, Z. Lin, P. Camy, S.-B. Dai, Z. Chen, Y. Zhao, L. Wang, Weidong Chen*, U. Griebner, V. Petrov, and X. Mateos, "Spectroscopy and high-power laser operation of a monoclinic Yb3+:MgWO4 crystal," Optics Letters, 2020, 45(7), 1770-1773.