潘忠奔
研究员
访问次数:
基本信息
  • 电子邮箱:
  • 入职时间:
    2022-03
  • 所在单位:
    信息科学与工程学院
  • 学历:
    研究生(博士)毕业
  • 办公地点:
    信息科学与工程学院N5 139
  • 性别:
  • 联系方式:
  • 学位:
    博士生
  • 毕业院校:
    山东大学
  • 博士生导师
  • 硕士生导师
教师简介

潘忠奔,男,1986年2月出生,工学博士,研究员,博士生导师。获山东省泰山学者青年专家、山东大学齐鲁青年和科技城人才计划等人才称号。本硕博就读于山东大学,2013年6月获材料学博士学位,同年7月入职中国工程物理研究院化工材料研究所,并入选所人才工程青年英才后备人选,2017-2018年在德国马克斯伯恩研究所开展为期一年的访学工作。2022年03月入职山东大学信息科学与工程学院,目前主要从事固体激光、光纤激光、激光功能晶体材料、单晶光纤的设计、制备与性能研究工作。作为项目负责人承担国家自然科学基金面上项目(2项)、青年基金、山东省泰山学者青年专家基金、国家重点研发子课题、中国工程物理研究院院长基金、山东大学齐鲁青年学者基金等项目多项。担任《红外与激光工程》期刊青年编委、中国激光杂志社第四届青年编辑委员会、《光学学报(网络版)》青年编委、青岛物理学会第十二届理事会理事、原中国工程物理研究院科学技术委员会学科(激光物理)专家组成员。在Laser & Photonics Reviews、Advanced Science、Advanced Optical Materials、Optics Letters、Applied Physics Letters等期刊上发表SCI论文100余篇,其中一作或通讯作者50余篇,文章总引用2500余次,H因子28。以第一申请人申请国家发明专利10余项,已授权3项,相关成果获“2011年光学重要成果”。


教育经历
  • 2004-09  — 2008-06
    山东大学
    集成电路与集成系统
    工学学士学位
  • 2008-09  — 2013-06
    山东大学
    材料学
    工学博士学位
工作经历
  • 2017-08 — 2018-09
    Max-Born-Institute
  • 2013-07 — 2022-02
    中国工程物理研究院化工材料研究所
研究领域

1. 人工晶体;

2. 固体激光技术;

3. 超快激光;

4. 光电子材料;



科研成果
论文

1.  曹永强. Lasing performance of the Tm:GAGG crystal in the 2 μm and 2.3 μm wavelength region.  Optical Materials Express,  15,  2234, 2025. 

2.  李波. Two-dimensional violet phosphorus as a broadband saturable absorber for mid-infrared photonics.  Optics Express,  33,  21328-21338, 2025. 

3.  杜滨健. PdX2 (X = S, Se) saturable absorbers for passively Q-switched Er:YAP laser at 3 μm.  Optics Express,  33,  30799-30810, 2025. 

4.  任科. Polarization-Selective Switchable Mode-Locked Pulses in Fiber Lasers Based on Anisotropic Quasi-2D Perovskites.  Laser & Photonics Reviews ,  2025. 

5.  孔令豪. Tailored Metal-Oxygen Bonding in Amorphous Perovskite CoSnO3 for Broadband Ultrafast Laser State Active Manipulation.  Laser & Photonics Reviews,  2025. 

6.  赵清溪. Crystalline FeOCl as a novel saturable absorber for broadband ultrafast photonic applications.  MATERIALS TODAY PHYSICS,  52,  2025. 

7.  赵清溪. Ultra-High Temperature Calcination of Crystalline α-Fe2O3 and Its Nonlinear Optical Properties for Ultrafast Photonics.  Advanced Science,  2025. 

8.  赵清溪. Surface oxygen vacancies in amorphous Fe2O3 tailored nonlinear optical properties for ultrafast photonics.  Journal of Materiomics,  11,  2025. 

9.  . Crystal growth, spectral properties, and 2.3 μm continuous-wave laser operation of Tm:YScO3 and Tm:LuScO3 crystals.  Optics Express,  33,  6245-6253, 2025. 

10.  Ren, Ke. 2D Transition Metal Carbo-Chalcogenide Nb2CSe2: A Combination of Transition Metal Dichalcogenide and MXene for Ultrafast Photonics Application.  Advanced Optical Materials,  2024. 

11.  于晓旭. Efficient high-power 2.3 μm continuous-wave laser operation of diffusion-bonded composite YVO4/Tm:GdVO4.  HIGH POWER LASER SCIENCE AND ENGINEERING,  2024. 

12.  Yu, Xiaoxu. Polarized, broadly tunable, 2.3 μm continuous-wave laser operation of Tm3+-vanadate crystals.  Optics Express,  32,  31422-31430, 2024. 

13.  任科. Copper Functionalized SnSe Nanoflakes Enabling Nonlinear Optical Features for Ultrafast Photonics.  Advanced Science,  2401218, 2024. 

14.  Yu, Xiaoxu. Porous nano-grained cuprous selenide (Cu2Se) for mid-infrared photonics.  JOURNAL OF ALLOYS AND COMPOUNDS ,  987,  2024. 

15.  于晓旭. Crystal growth, polarized spectral properties, and 2.3 μm laser performance of Tm:LuVO4 crystal.  Optics Express,  32,  19611-19625, 2024. 

16.  于晓旭. Polarized spectral properties and 2.3 μm laser performance of the Tm:YVO4 crystal.  Optics Express,  32,  18055-18067, 2024. 

17.  Lin, Zhang-Lang. Kerr-lens mode-locking of an Yb:SALLO laser generating 25 fs pulses at 1090 nm.  APPLIED PHYSICS LETTERS,  124,  2024. 

18.  . Diode-pumped Tm:YAP laser operating at 2.3 μm with enhanced performance through cascade lasing.  Optics Express,  32,  3461-3469, 2024. 

19.  于晓旭. Six-watt diode-pumped Tm:GdVO4 laser at 2.29 μm.  Optics Letters,  48,  6404-6407, 2023. 

20.  李倩文. Diode-pumped mid-infrared Tm:YGG laser at 2.0 and 2.3 μm.  Optics and Laser Technology,  109961, 2023. 

21.  Yu, Xiaoxu. Diode-pumped efficient high-power cascade Tm:GdVO4 laser simultaneously operating at-2 & mu;m and-2.3 & mu;m.  Optics Express,  31,  26368-26377, 2023. 

22.  于晓旭. Diode-pumped efficient high-power cascade Tm:GdVO4 laser simultaneously operating at ~2 μm and ~2.3 μm.  Optics Express,  2023. 

23.  潘忠奔. Tm,Ho:Ca(Gd,Lu)AlO4 crystals: Polarized spectroscopy and laser operation.  JOURNAL OF LUMINESCENCE Journal,  257,  2023. 

24.  于晓旭. Cascade lasing at ~2 μm and ~2.3 μm in a diode-pumped Tm:YVO4 laser.  Optics Express,  2023. 

25.  于晓旭. Cascade lasing at-2 μm and-2.3 μm in a diode-pumped Tm:YVO4 laser.  Optics Express,  31,  13576, 2023. 

26.  . Enhanced Interband Transition in FeCoNiAlTi High-Entropy Alloy for Ultrafast Nonlinear Optical Applications.  Advanced Optical Materials,  2023. 

27.  潘忠奔. Tm,Ho:Ca(Gd,Lu)AlO4 crystals: Polarized spectroscopy and laser operation.  Journal of Luminescence,  2023. 

28.  潘忠奔. Compact diode-pumped continuous wave and passively Q switched Tm:YAG laser at 2.33μm.  OPTICS LETTERS,  2022. 

29.  潘忠奔. Watt-level diode-pumped Tm:YVO4 laser at 2.3 μm.  OPTICS LETTERS,  2022. 

30.  查方圆. Large-scale few-layered MoS2 as a saturable absorber for Q-switching operation at 2.3 μm.  OPTICS LETTERS,  47,  3271, 2022. 

31.  潘忠奔. Tm,Ho:Ca(Gd,Lu)AlO4 crystals: Crystal growth, structure refinement and Judd-Ofelt analysis.  JOURNAL OF LUMINESCENCE Journal,  246,  2022. 

32.  褚宏伟. Passively Q-switched Tm:YAP laser with a zeolitic imidalate framework-67 saturable absorber operating at H-3(4)-> H-3(5) transition.  Optics and Laser Technology,  147,  2022. 

33.  潘忠奔. Polarized spectroscopy and diode-pumped laser operation of disordered Yb:Ca3Gd2(BO3)4 crystal.  Optical Materials Express,  2022. 

34.  潘忠奔. Sub-50 fs pulse generation from a SESAM mode-locked Tm,Ho-codoped calcium aluminate laser.  Optics Letters,  2021. 

35.  潘忠奔. SWCNT-SA mode-locked Tm,Ho:LCLNGG laser.  Optics Express,  2021. 

36.  Zhongben Pan. SWCNT-SA mode-locked Tm,Ho:LCLNGG laser.  Optics Express,  29,  40323-40332, 2021. 

37.  Zhongben Pan. Disordered Tm3+,Ho3+-codoped CNGG garnet crystal: Towards efficient laser materials for ultrashort pulse generation at ~2μm.  J. Alloy. Compd.,  853,  157100, 2021. 

38.  Zhongben Pan. Polarized spectroscopy and diode-pumped laser operation of disordered Yb:Ca3Gd2(BO3)4 crystal.  Opt. Mat. Express,  12,  673-683, 2021. 

39.  Zhongben Pan  and Weidong Chen. Sub-50 fs pulse generation from a SESAM mode-locked Tm,Ho-codoped calcium aluminate laser.  Opt. Lett.,  46,  2642-2645, 2021. 

40.  Zhongben Pan  and Dechun Li. Passively Q-switched Tm:CaLu0.1Gd0.9AlO4 laser at 2μm with hematite nanosheets as the saturable absorber.  Optics Express,  28,  16893-16899, 2020. 

41.  Zhongben Pan. "Mixed" Tm:Ca(Gd,Lu)AlO4-a novel crystal for tunable and mode-locked 2μm lasers.  Optics Express,  27,  9987-9995, 2019. 

42.  Zhongben Pan. 67-fs pulse generation from a mode-locked Tm,Ho:CLNGG laser at 2083 nm.  Optics Express,  27,  1922-1928, 2019. 

43.  Zhongben Pan. Graphene mode-locked Tm,Ho-codoped crystalline garnet laser producing 70-fs pulses near 2.1 µm.  OSA Continuum,  2,  2593-2600, 2019. 

44.  Zhongben Pan. Generation of 84-fs pulses from a mode-locked Tm:CNNGG disordered garnet crystal laser.  Photonics Res.,  6,  800-804, 2018. 

45.  Zhongben Pan. Sub-80 fs mode-locked Tm,Ho-codoped disordered garnet crystal oscillator operating at 2081 nm.  Opt. Lett.,  43,  5154-5157, 2018. 

46.  Zhongben Pan. 78-fs pulses from a SWCNT-SA mode-locked Tm:CLNGG disordered garnet crystal laser at 2017 nm.  Opt. Lett.,  43,  4268-4271, 2018. 

47.  Zhongben Pan. Comparative study of spectroscopic and laser properties of Tm3+, Na+(Li+)-codoped Ca3Nb1.5Ga3.5O12-type disordered garnet crystals for mode-locked lasers.  Opt. Mat. Express,  8,  2287-2299, 2018. 

48.  Jie Ma  and Zhongben Pan. Sub-80 fs pulses generation from a diode-pumped mode-locked Nd:Ca3La2(BO3)4 disordered crystal laser.  Opt. Lett.,  41,  1384-1387, 2016. 

49.  Zhongben Pan. Growth, thermal properties and laser operation of a new disordered crystal: Nd-doped Sr3La2(BO3)4.  J. Alloy. Compd.,  607,  16-22, 2014. 

50.  Zhongben Pan. Growth, thermal properties and laser operation of Nd3+-doped Ca3La2(BO3)4: A new disordered laser crystal.  Opt. Express,  21,  6091-6100, 2013. 

51.  Zhongben Pan. Growth and characterization of self-Q-switched Nd:Cr:YVO4 crystal.  Opt. Express,  20,  2178-2183, 2012. 

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