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7163银河际:周延

时间:2021-03-18浏览:2216设置

导师介绍

导师姓名

周延


导师性别

职务职称

副教授

所在院系

理学院应用物理系

一级学科

物理学

二级学科

光学

研究方向

超快光纤激光器

联系电话

15000227387

电子邮箱

yzhou@sit.edu.cn

个人简介

硕士生导师,《应用技术学报》青年编委。主要从事超快光纤激光器的理论及实验研究。具体涉及:基于低维纳米材料的被动调Q/锁模光纤激光器、矢量孤子光纤激光器及双色超快光纤激光器。目前,以第一/通讯作者身份已发表SCI论文二十余篇。主持科研项目包括:国家自然科学基金青年基金项目、上海市青年科技英才扬帆计划、企业横向课题等。

学习与工作经历

2022.07-至今:7163银河际理学院应用物理系,副教授

2017.08-2022.06:7163银河际理学院应用物理系,讲师

2012.09-2017.06:上海交通大学物理与天文学院(光学),博士

2008.09-2012.06:上海大学理学院物理系(电子信息科学与技术),学士

科研工作与成果

主持项目:

1、国家自然科学基金青年基金项目(62105208)。

2、上海市青年科技英才扬帆计划(20YF1447500)。

3、企业横向课题(J2023-343)。

 

论文:

[1]   G. Y. Xu, Y. Y. Peng, Y. Q. Tang, K. Y. Zhang, M. S. Liao, Y. Z. Fang and Y. Zhou*, “Modulating dual-wavelength   optical fiber vector solitons,” Laser Phys. 33(12), 125102 (2023).

[2]   Y. Y. Peng, G. Y. Xu, K. Y. Zhang, M. S. Liao, Y. Z. Fang and Y. Zhou*, “Modulating anti-dark   vector solitons,” Laser Phys. 33(9), 095101 (2023).

[3]   G. Y. Xu, K. Y. Zhang, M. S. Liao, Y. Z. Fang and Y. Zhou*, “Modulating anti-dark vector bisolitons,” Optik 281,   170815 (2023).

[4]   G. Y. Xu, K. Y. Zhang, C. Luo, J. L. Jia, X. H. Ma, M. S. Liao, G. Y. Zhao,   Y. Z. Fang and Y. Zhou*, “Modulating   vector soliton molecules,” Optik 271, 170140 (2022).

[5]   Y. Zhou, K. Y. Zhang, T. X. Wang,   W. J. Bi, M. S. Liao, G. Y. Zhao and Y. Z. Fang, “Recent progress in   passively mode-locked fiber lasers based on low dimensional nanomaterials,”   Results in Optics 9, 100302 (2022).

[6]   K. Y. Zhang, C. Luo, J. L. Jia, X. H. Ma, M. S. Liao, G. Y. Zhao, Y. Z. Fang   and Y. Zhou*, “Modulating chirped   Gaussian vector solitons with group-velocity dispersion,” Optik 266, 169651   (2022).

[7]   K. Y. Zhang, X. H. Ma, M. Yang, C. Luo, M. S. Liao, G. Y. Zhao, Y. Z. Fang   and Y. Zhou*, “Modulating   super-sech vector bisolitons,” Optik 260, 169134 (2022).

[8]   Y. Zhou, K. Y. Zhang, C. Luo, X.   Y. Lin, M. S. Liao, G. Y. Zhao and Y. Z. Fang, “Manipulating vector solitons   with super-sech pulse shapes,” Chin. Phys. B 31(5), 054203 (2022).

[9]   Y. Zhou, K. Y. Zhang, M. S. Liao,   G. Y. Zhao and Y. Z. Fang, “Operating vector solitons with chirped sech pulse   shapes,” Photonics 9(3), 143 (2022).

[10]   Y. Zhou, X. Y. Lin, M. S. Liao, G.   Y. Zhao and Y. Z. Fang, “Modulating self-similar vector bisolitons,” Optik   244, 167616 (2021).

[11]   Y. Zhou, X. Y. Lin, M. S. Liao, G.   Y. Zhao and Y. Z. Fang, “Modulating vector bisolitons with chirped Gaussian   pulse shapes,” Optik 242, 167185 (2021).

[12]   Y. Zhou, X. Y. Lin, Y. G. Li, M.   S. Liao, G. Y. Zhao and Y. Z. Fang, “Modulation of dark vector bisolitons,”   Optik 240, 166832 (2021).

[13]   Y. Zhou, X. Y. Lin, M. S. Liao, G.   Y. Zhao and Y. Z. Fang, “Polarization manipulation of bright-dark vector   bisolitons,” Chin. Phys. B 30(3), 034208 (2021).

[14]   Y. Zhou, X. Li, G. Y. Zhao, M. S.   Liao and Y. Z. Fang, “Polarization modulation of vector bisolitons,” Optik   227, 166022 (2021).

[15]   Y. Zhou, Y. F. Li, Y. G. Li, X.   Li, G. Y. Zhao, M. S. Liao and Y. Z. Fang, “Manipulation of parabolic   polarization- and group-velocity-locked vector solitons,” Optik 224, 165699   (2020).

[16]   Y. Zhou, Y. F. Li, X. Li, M. S.   Liao, J. S. Hou and Y. Z. Fang, “Pulse shaping of bright-dark vector soliton   pair,” Chin. Phys. B 29(5), 054202 (2020).

[17]   Y. Zhou, Y. F. Li, X. Li, G. Y.   Zhao, J. S. Hou, J. Zou, Y. Z. Fang and M. S. Liao, “Manipulation of   polarization- and group-velocity-locked dark vector solitons,” Optik 203,   163925 (2020).

[18]   Y. Zhou, Y. F. Li, R. L. Zhang, T.   X. Wang, W. J. Bi, X. Li, P. W. Kuan, Y. Z. Fang and M. S. Liao, “Generation   of pseudo-high-order polarization-locked vector solitons with super-Gaussian   pulses,” Optik 194, 163132 (2019).

[19]   Y. Zhou, R. L. Zhang, X. Li, P. W.   Kuan, D. Y. He, J. S. Hou, Y. F. Liu, Y. Z. Fang and M. S. Liao, “CsPbBr3   nanocrystal for mode-locking Tm-doped fiber laser,” Chin. Phys. B 28(9),   094203 (2019).

[20]   Y. Zhou, R. L. Zhang, P. Chen, Y.   F. Liu, Y. Z. Fang, T. X. Wang, X. Li, P. W. Kuan and M. S. Liao, “Passively   Q-switched and mode-locked ytterbium fiber laser with Bi2S3   nanowire,” Laser Phys. 29(5), 055101 (2019).

[21]   Y. Zhou, J. Q. Xu and Y. L. Tang, “Composite   Nd:YAG-SiC-bonding laser with orthogonal-linear-polarization output,” Opt.   Express 25(2), 1515 (2017).

[22]   Y. Zhou, Z. P. Hu, Y. Li, J. Q.   Xu, X.S. Tang and Y. L. Tang, “CsPbBr3 nanocrystal saturable   absorber for mode-locking ytterbium fiber laser,” Appl. Phys. Lett. 108(26), 261108   (2016).

[23]   Y. Zhou, M. Zhao, S. W. Wang, C.   X. Hu,Y. Wang, S. Yan, Y. Li, J. Q. Xu, Y. L. Tang, L. F. Gao, Q. Wang and H.   L. Zhang, “Developing carbon-nitride nanosheets for mode-locking ytterbium   fiber lasers,” Opt. Lett. 41(6), 1221 (2016).

社会学术团体兼职

主要研究方向

超快光纤激光器

3年指导研究生的就业情况

 


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