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徐斌

系别:电子工程系

职称:教授、博导

邮箱:xubin@xmu.edu.cn

联系方式:

办公地点:厦门大学翔安校区文宣楼(主楼4号楼)B218

个人简历:

学历:

1997-2001 淮北师范大学 理学学士,物理学专业

2001-2004 福建师范大学 理学硕士,光学专业

2008-2011 法国卡昂大学 理学博士,光学专业

研究方向:

1、新型激光(面向应用的各种新型激光光源研究)

2、超快激光(高性能飞秒和皮秒激光光源研究)

3、单频激光(高性能低噪声、单频、稳频激光光源研究)

4、光场调控(面向高端应用的激光光场多维调控)

5、激光应用(光源开发+应用开发研究)


主讲课程:

1、激光原理(研究生课)

2、信号与系统(本科生课)


学术兼职:

1、光电专委会委员/光机电分会理事

2、中国光学学会高级会员

3、期刊审稿:Photonics Research, Optics Letters, Optics Express, Nanophotonics, Optics and Laser Technology, IEEE Photonics Technology Letters, Optical Materials, Optics Communications, Chinese Optics Letters, Scientific Reports等40多个光学领域专业期刊审稿人。

学生培养:

1、指导2014级硕士研究生王一获得研究生国家奖学金2次。

2、指导2014级硕士研究生林芝获得研究生国家奖学金1次,学院奖1次。

3、指导2015级硕士研究生黄小栩获得研究生国家奖学金2次。

4、指导2015级硕士研究生兰敬隆获得研究生国家奖学金2次,学院奖1次;获评2019年度中国电子学会优秀硕士学位论文。

5、指导2015级硕士研究生崔琴获得学院奖2次。

6、指导2016级硕士研究生周志勇获得研究生国家奖学金2次;获评2019年福建省优秀硕士学位论文。

7、指导2016级硕士研究生关小锋获得研究生国家奖学金国奖1次,学院奖1次。

8、指导2017级硕士研究生王家伟获得研究生国家奖学金1次,学院奖1次。

9、指导2017级硕士研究生田青玉获得学院奖1次;获评2020年度中国电子学会优秀硕士学位论文。田青玉录取为法国里尔中央理工大学2020级博士生。

10、指导2017级硕士研究生张煜昭获得研究生国家奖学金1次,学院奖1次。

11、指导2017级硕士研究生李楠获得学院奖1次。李楠录取为浙江大学2020级博士生。

12、指导2018级硕士研究生蔡亚琪获得研究生国家奖学金1次。

13、指导2018级硕士研究生张云杉获得研究生国家奖学金1次;获评2021年福建省优秀硕士学位论文。

14、指导2019级硕士研究生周伦滨获得研究生国家奖学金1次。

15、指导2019级硕士研究生张腾获得刘晓数理电子科学奖一等奖;获评2022年福建省优秀硕士学位论文。

16、指导2020级硕士研究生邹靖宇获得研究生国家奖学金1次。

17、指导2021级硕士研究生熊梦园获得研究生国家奖学金1次。

18、指导2021级硕士研究生赵雨泉获得学院奖1次。

19、指导2022级硕士研究生郭琨录取为华南理工大学2025级博士生。

20、指导2022级硕士研究生韩野获得学院奖1次。

21、指导2022级硕士研究生朱逸臻获得学院奖1次;朱逸臻录取为浙江大学2025级博士生)

22、指导2023级硕士研究生刘亚龙获得学院奖1次。

23、指导2023级本科生林永康发表二区论文一篇;林永康录取为浙江大学2027级直博生。


每年计划招收4名以上硕博士研究生,欢迎报考!激光和光电子产业发展迅猛,大有前途!欢迎有志于该领域研究的同学随时发邮件(xubin@xmu.edu.cn)联系咨询!一起努力,带你找到更好的自己!


代表作:

[1] Yinjie Zhuo, Yalong Liu, Peng Yu, Jianfa Chen, Dong Wang, Bin Xu*, Angela Pirri, and Guido Toci, “64-fs Ultrashort Pulse Generation from a Kerr-Lens ModeLocked (Yb0.058Sc0.508Y0.434)2O3 Ceramic Laser,” Optics Letters 50(24), 7472-7475 (2025).

[2] Peng Yu, Wudi Wang, Yalong Liu, Jianfa Chen, Dong Wang, Bin Xu*, Qing Ye, Yihua Hu, Jun Xu, Liangbi Su, “32-fs Kerr-lens mode-locked alexandrite laser pumped by a Pr:LiYF4 laser at 639 nm,” Optics Letters 50(18), 5865-5868 (2025).

[3]  Yalong Liu, Yizhen Zhu, Shengjie Yu, Jianfa Chen, Dong Wang, Bin Xu*, Cunzhu Tong*, Xiaodong Xu, Jun Xu, “Vecsel-pumped Kerr-lens mode-locked Yb3+-doped femtosecond laser,” Optics and Laser Technology 189, 113071 (2025).

[4] Yizhen Zhu, Xuhong Li, Yalong Liu, Yinjie Zhuo, Jianfa Chen, Dong Wang, Bin Xu*, G. Lakshminarayana, Yan Wang*, Cunzhu Tong*, “Growth, spectroscopy, and the first demonstration of diode-pumped Kerr-lens mode-locked operation of a Yb:CLNGG crystal,” Optics & Laser Technology 186, 112719 (2025).

[5] Ye Han, Kun Guo, Yuquan Zhao, Mengyuan Xiong, Dong Wang, Jianfa Chen, Xudong Cui, and Bin Xu*, “Compact high-power 320-nm continuous-wave single-frequency laser based on power scaling of a diode-pumped Pr:LiYF4 ring laser at red,” Optics Letters 49(14), 3854-3857 (2024).

[6] Yuquan Zhao, Mengyuan Xiong, Dong Wang, Bin Xu*, Mauro Luciano Baesso, “First single-frequency Pr:LiYF4 ring laser at green,” Optics & Laser Technology 168, 109960 (2024).

[7] Mengyuan Xiong, Yuquan Zhao, Dong Wang, Zhong Chen, Bin Xu*, Alexey Nizamutdinov, Vadim Semashko, and Stella Korableva, “Watt-level and near diffraction-limited Pr3+-doped single-crystal fiber lasers,” Optics Letters 48(18), 4725-4728 (2023.9.5).

[8] Kai Feng, Dong Wang, Yizhen Zhu, Bin Xu∗, Zhong Chen, Mauro Luciano Baesso, Tomaz Catunda, “Simple and compact high-power continuous-wave deep ultraviolet source at 261 nm based on diode-pumped intra-cavity frequency doubled Pr:LiYF4 green laser,” Optics Express 31(12), 18799-18806 (2023.5.22).

[9] Dong Wang, Jingyu Zou, Bin Xu∗, Xudong Cui, Andrey Lyapin, Polina Ryabochkina, Vadim Semashko, Stella Korableva, “Diode-pumped CaGdAlO4 crystal-assisted Kerr-lens mode-locked all-solid-state Pr:LiYF4 laser at 639 nm,” Optics Letters 47 (16), 3980-3983 (2022.8.15)

[10] Teng Zhang, Wanxin Zheng, Kai Feng, Dong Wang, Bin Xu*, Zhengqian Luo, Zhenfang Yu, Xudong Cui, Mauro Luciano Baesso, and Tomaz Catunda, “Towards Power Scaling of Simple CW Ultraviolet via Pr:LiYF4-LBO Laser at 320 nm,” IEEE Photonics Technology Letters 34 (2), 129-132 (2022)

[11] 周伦滨, 冯凯, 王冬, 徐斌*, “缺陷镜技术直接产生高功率高阶涡旋激光研究 (Invited paper),” 红外与激光工程, 50 (9), 20210408 (2021).

[12] Yunshan Zhang, Lunbin Zhou, Teng Zhang, Yaqi Cai, Bin Xu*, Xiaodong Xu, Jun Xu, “Blue diode-pumped single-longitudinal-mode Pr:YLF lasers in orange spectral region,” Optics and Laser Technology 130, 106373 (2020.5.28)

[13] Qingyu Tian, Peng Yin, Teng Zhang, Lunbin Zhou, Bin Xu*, Zhengqian Luo, Hongliang Liu*, Yanqi Ge*, Jian Zhang, Peng Liu and Xiaodong Xu, “MXene Ti3C2Tx saturable absorber for passively Q-switched mid-infrared laser operation of femtosecond-laser–inscribed Er:Y2O3 ceramic channel waveguide,” Nanophotonics 9(8), 2495–2503 (2020)

[14] Qingyu Tian, Bin Xu*, Nan Li, Zhengqian Luo, Huiying Xu, Zhiping Cai, “Direct generation of orthogonally polarized dual-wavelength continuous-wave and passively Q-switched vortex beam in diode-pumped Pr:YLF lasers,” Optics Letters 44 (22), 5586-5589 (2019.11.13)

[15] Yunshan Zhang, Yaqi Cai, Bin Xu*, Jian Zhang, Lei Xiao, Peng Liu, and Xiaodong Xu, “Single-mode oscillations of diode-pumped mid-infrared Er:Y2O3 ceramic microchip lasers at 2.7 μm,” Optics Express 27 (22), 31783-31789 (2019)

[16] Nan Li, Junjie Huang, Bin Xu*, Yaqi Cai, Jie Lu, Linjie Zhan, Zhengqian Luo, Huiying Xu, Zhiping Cai, and Weiwei Cai, “Direct generation of an ultrafast vortex beam in a CVD-graphene-based passively mode-locked Pr:LiYF4 visible laser,” Photonics Research 7 (11), 1209-1213 (2019.10.4).

[17] Nan Li, Bin Xu*, Shengwei Cui, Xiaodong Qiu, Zhengqian Luo, Huiying Xu, Zhiping Cai, Lixiang Chen, and Richard Moncorgé, “High-order vortex generation from CW and passively Q-switched Pr:YLF visible lasers,” IEEE Photonics Technology Letters 31 (17), 1457-1460 (2019).

[18] Qingyu Tian, Bin Xu*, Yunshan Zhang, Huiying Xu, Zhiping Cai, and Xiaodong Xu, “1.83-μm high-power and high-energy light source based on 885-nm in-band diode-pumped Nd:YAG bulk laser operating on 4F3/2→4I15/2 transition,” Optics Express 27 (9), 12565-12571 (2019)

[19] Yuzhao Zhang, Bin Xu*, Qingyu Tian, Zhengqian Luo, Huiying Xu, Zhiping Cai, Dunlu Sun, Qingli Zhang, Peng Liu, Xiaodong Xu and Jian Zhang, “Sub-15-ns passively Q-switched Er:YSGG laser at 2.8 μm with Fe:ZnSe saturable absorber,” IEEE Photonics Technology Letters 31 (7), 565-568 (2019)

[20] Yaqi Cai, Bin Xu*, Yunshan Zhang, Qingyu Tian, Xiaodong Xu, Qingsong Song, Dongzhen Li, Jun Xu and Ivan Buchvarov, “High power and energy generation in a Nd:YAG single-crystal fiber laser at 1834 nm,” Photonics Research 7 (2), 162-166 (2019.1.19)

[21] Xiaofeng Guan, Jiawei Wang, Yuzhao Zhang, Bin Xu*, Zhengqian Luo, Huiying Xu, Zhiping Cai, Xiaodong Xu, Jian Zhang, and Jun Xu, “Self-Q-switched and wavelength-tunable tungsten disulfide-based passively Q-switched Er:Y2O3 ceramic lasers,” Photonics Research 6 (9), 830-836 (2018)

[22] Xiaoxu Huang, Bin Xu*, Shengwei Cui, Huiying Xu, Zhiping Cai, and Lixiang Chen, “Direct Generation of Vortex Laser by Rotating Induced Off-Axis Pumping,” Journal of Selected Topics in Quantum Electronics, 24 (5), 1601606 (2018.3.15)

[23] Zhiyong Zhou, Bin Xu*, Xiaofeng Guan, Huiying Xu, Zhiping Cai, Xiaodong Xu, Dongzhen Li and Jun Xu, “Tm:Y2SiO5 crystal: effective material for the generation of eye-safe laser sources,” Journal of Selected Topics in Quantum Electronics, 24 (5), 1602007 (2018.2.19)

[24] Xigun Yan, Saiyu Luo, Bin Xu*, Huiying Xu, Zhiping Cai, Jingzhou Li, Hongxing Dong, Long Zhang, and Zhengqian Luo, “Passively Q-switched green laser operation using CdTe/CdS quantum dots (Invited paper),” Chinese Optics Letters 16 (2), 020005 (2018).

[25] Zhiyong Zhou, Xiaofeng Guan, Xiaoxu Huang, Bin Xu*, Huiying Xu, Zhiping Cai, Xiaodong Xu*, Peng Liu, Dongzhen Li, Jian Zhang, and Jun Xu, “Tm3+-doped LuYO3 mixed sesquioxide ceramic laser: effective 2.05-μm source operating in continuous- wave and passive Q-switching regimes,” Optics Letters 42 (19), 3781-3784 (2017.9.20)

[26] Bin Xu, Saiyu Luo, Xigun Yan, Jingzhou Li, Jinglong Lan, Zhengqian Luo, Huiying Xu, Zhiping Cai, Hongxing Dong, Jun Wang, Long Zhang, “CdTe/CdS quantum dots: effective saturable absorber for visible lasers,” Journal of Selected Topics in Quantum Electronics, 23 (5), 1900507 (2017.2.1)

[27] Jinglong Lan, Yi Wang, Xiaoxu Huang, Zhi Lin, Bin Xu*, Huiying Xu, Zhiping Cai, Xiaodong Xu, and Jun Xu, “Single- and dual-wavelength lasers of diode-pumped Nd:LuYAG mixed crystal on various 4F3/2 → 4I13/2 Stark-level transitions,” Journal of Physics D-Applied Physics 49, 305101 (2016.7.5)

[28] Bin Xu, Yi Wang, Xiaoxu Huang, Jinglong Lan, Zhi Lin, Zhengqian Luo, Huiying Xu, Zhiping Cai, and Richard Moncorgé, “Watt-level narrow-linewidth Nd:YAG laser operating on 4F3/2→4I15/2 transition at 1834 nm,” Optics Express 24 (4), 3601-3606 (2016.2.11)

[29] Bin Xu, Yi Wang, Jian Peng, Zhengqian Luo, Huiying Xu, Zhiping Cai, and Jian Weng, “Topological insulator Bi2Se3 based Q-switched Nd:LiYF4 nanosecond laser at 1313 nm,” Optics Express 23 (6), 7674-7680 (2015.3.9)

[30] Bin Xu, Yongjie Cheng, Biao Qu, Saiyu Luo, Huiying Xu, Zhiping Cai, Patrice Camy, Jean-Louis Doualan, Richard Moncorgé, “InGaN-LD-pumped Pr3+:LiYF4 continuous-wave deep red lasers at 697.6 and 695.8 nm,” Optics and Laser Technology 67, 146–149 (2015.10.14)

[31] Bin Xu*, Yongjie Cheng, Yi Wang, Yizhong Huang, Jian Peng, Zhengqian Luo, Huiying Xu, Zhiping Cai, Jian Weng, and Richard Moncorgé, “Passively Q-switched Nd:YAlO3 nanosecond laser using MoS2 as saturable absorber,” Optics Express 22 (23), 28934-28940 (2014)

[32] Bin Xu, Zhe Liu, Huiying Xu, Zhiping Cai, Chenghang Zeng, Shunlin Huang, Yu Yan, Fengjuan Wang, Saiyu Luo, Patrice Camy, Jean-Louis Doualan, Alain Braud, and Richard Moncorgé, “High-efficiency InGaN-LD-pumped bulk Pr:YLF orange laser at 607nm,” Optics Communications 305, 96–99 (2013)

[33] Bin Xu, Florent Starecki, David Paboeuf, Patrice Camy*, Jean Louis Doualan, Zhiping Cai, Alain Braud, Richard Moncorgé, Ph. Goldner, and F. Bretenaker, “Red and orange laser operation of Pr:KYF4 pumped by a Nd:YAG/LBO laser at 469.1nm and a InGaN laser diode at 444nm,” Optics Express 21 (5), 5567-5574 (2013)

[34] Bin Xu, Patrice Camy*, Jean Louis Doualan, Remi Soulard, Alain Braud, Zhiping Cai and Richard Moncorgé, “Efficient diode-pumped Nd:GGG laser operation at 933.6 and 937.3 nm,” Applied Physics B 106, 19-24 (2012)

[35] Bin Xu, Patrice Camy*, Jean Louis Doualan, Zhiping Cai, Francois Balembois and Richard Moncorgé, “Frequency-doubling and sum-frquency mixing operation at 469.2, 471 and 473 nm in Nd:YAG,” J. Opt. Soc. Am. B 29 (3), 346-350 (2012)

[36] Bin Xu, Patrice Camy*, Jean Louis Doualan, Alain Braud, Zhiping Cai, Alain Brenier and Richard Moncorgé, “Diode-pumped continuous-wave blue laser at 467, 467.7 and 468.5 nm in Nd:GGG,” Laser Physics Letters 9 (4), 295–300 (2012)

[37] Bin Xu, Patrice Camy*, Jean-Louis Doualan, Zhiping Cai, and Richard Moncorgé, “Visible laser operation of Pr3+-doped fluoride crystals pumped by a 469 nm blue laser,” Optics Express 19 (2), 1191-1197 (2011)


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