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方致伟

物理与电子科学学院副教授

个人资料

  • 部门: 物理与电子科学学院
  • 性别:
  • 专业技术职务: 副教授
  • 毕业院校: 中国科学院大学(中科院上海光学精密机械研究所)
  • 学位: 博士
  • 学历: 博士
  • 联系电话:
  • 电子邮箱: zwfang@phy.ecnu.edu.cn
  • 办公地址: 物理楼
  • 通讯地址: 上海市闵行区东川路500号
  • 邮编: 200241
  • 传真:

教育经历

2009.09-2013.06:   理学学士, 物理与材料科学学院,安徽大学;


2013.09-2018.06:   理学博士, 中国科学院大学(中国科学院上海光学精密机械研究所);


工作经历

2018.06-2021.03:  博士后,  物理与电子科学学院,华东师范大学,中国;

2018.12-2019.04:  访问学者, University of Victoria, Canada

2021.04-至今:    副教授,物理与电子科学学院,华东师范大学,中国。



个人简介

  方致伟2018年获得中国科学院大学(中国科学院上海光学精密机械研究所)/上海科技大学联合培养理学博士学位,20186进入华东师范大学开展博士后工作,期间曾在加拿大维多利亚大学从事访问学者工作20214起以副教授的岗位加入华东师范大学物理与电子科学学院。目研究方向主要集中在微纳光子学和集成光子学领域,发表SCI论文40余篇,其中第一/共一作者和通讯作者发表SCI论文30,发表在Physical Review Letters(2篇)Laser & Photonics Reviews(3,Light: Science & Applications(2Optics Letters(8篇) 等国际期刊上,其中3个工作被选为当期的封面文章和卷首插图,3个工作被选为编辑推荐文章,1个工作入选ESI高被引论文,学术上论文总引用2000余次,国家发明专利授权4,主持国家自然科学基金青年科学基金项目1项、面上项目1项和国家重点研发项目子课题1项


社会兼职

1. 期刊审稿人:Laser & Photonics Reviews, Photonics Research, Advanced Materials, Optics Letters, Optics Express, Chinese Optics Letters, Optics Communications, 《光学学报》,《激光与光电子学进展》, ......

研究领域

● 飞秒激光微加工;

●  铌酸锂光子学;

●  集成光学;

●  非线性光学。


招生与培养

开授课程

课程:

1. 2021-2022年第一学期 大学物理C (助教);

2. 2021-2022年第二学期材料创新研究(二);

3. 第二学期物质科学A(物理);



指导学生:

1. 2022级 硕士研究生 黄*芬(2023年转博);

2. 2023级 硕士研究生 戴*雅; 

3. 2022届本科毕业生 祝*然 毕设题目《铌酸锂微腔激光器的制备与调控》 (校级优秀毕业论文);

4. 2022届本科毕业生 丁*君 毕设题目《芯片上微腔光频梳的设计和性能研究》;

52022-24年度上海中学生英才计划华东师范大学执行导师;

6. 2023级物理师范班的学业导师。


 

科研项目

主持:

● 国家自然科学基金青年科学基金项目 (12004116, 基于高品质片上铌酸锂微腔的光频梳及其调控研究),2021-2023,30万;

● 国家自然科学基金面上项目(12274133 , 基于薄膜铌酸锂的可调谐高功率窄线宽激光原理与与器件研究),2023-2026,72.2万;

● 国家重点研发项目(2023YFB4604600,五轴振镜激光加工模块与技术)课题一(全数字高性能振镜电机及模组光学系统研究)负责人,2024-2026,273.5万


参与

● 国家重点研发项目(2022YFA1404600,面向集成光电芯片应用的碳化硅薄膜物态调控研究),2023-2027,223.45万


学术成果

Publications (First Author , Co-First Author and corresponding author)


Representative publications:

[1]    Zhiwei Fang, # Sanaul Haque, # Saeed Farajollahi, Haipeng Luo, Jintian Lin, Rongbo Wu, Jianhao Zhang, Zhe Wang, Min Wang, Ya Cheng*, and Tao Lu*. “Polygon coherent modes in a weakly perturbed whispering gallery microresonator for efficient second harmonic, optomechanical, and frequency comb generations.” Physical Review Letters, 2020, 125(17): 173901 (The cover of this week's issue).

[2]    Yuanlin Zheng,#Zhiwei Fang,# Shijie Liu, Ya Cheng*, and Xianfeng Chen*. “High-Q Exterior whispering-gallery modes in a double-layer crystalline microdisk resonator.” Physical Review Letters, 2019, 122(25): 253902 (Co-First Author).

[3]    Junxia Zhou, Youting Liang, Zhaoxiang Liu, Wei Chu, Haisu Zhang, Difeng Yin, Zhiwei Fang,* Rongbo Wu, Jianhao Zhang, Wei Chen, Zhe Wang, Yuan Zhou, Min Wang, And Ya Cheng*. “On-chip integrated waveguide amplifiers on Erbium-doped thin film lithium niobate on insulator.” Laser & Photonics Reviews, 2021, 15(8): 2100030. (Corresponding author).

[4]    Yuan Zhou; Yiran Zhu; Zhiwei Fang*; Shupeng Yu; Ting Huang; Junxia Zhou; Rongbo Wu; Jian Liu; Yu Ma; Zhe Wang; Jianping Yu; Zhaoxiang Liu; Haisu Zhang; Zhenhua Wang; Min Wang; Ya Cheng*. “Monolithically Integrated Active Passive Waveguide Array Fabricated on Thin Film Lithium Niobate Using a Single Continuous Photolithography Process.” Laser & Photonics Reviews2023, 17 2200686. (Corresponding author, Frontispiece).

[5]    Zhuangzhuang Zhu, Zhe Wang, Zhiwei Fang*, Dong Lin, Yuan Zhou, Yunxian Zhong, Jian Xu, Jinping He*, Ya Cheng*, “Low loss 1×16/40 flat type beam splitters on thin film lithium niobate using photolithography assisted chemo-mechanical etching”Laser & Photonics Reviews2023, 2301052 (Corresponding author).

[6]    Chengli Wang,#Zhiwei Fang,# Ailun Yi,# Bingcheng Yang, Zhe Wang, Liping Zhou, Chen Shen, Yifan Zhu, Yuan Zhou, Rui Bao, Zhongxu Li, Yang Chen, Kai Huang, Jiaxiang Zhang*, Ya Cheng*, Xin Ou*. “High-Q microresonators on 4H-silicon-carbide-on-insulator platform for nonlinear photonics.”Light: Science & Applications 2021, 10, 139 (Co-First Author: Front cover paper).

[7]    Chengli Wang,# Jin Li,# Ailun Yi,#  Zhiwei Fang,#, Liping Zhou, Zhe Wang, Rui Niu, Yang Chen, Jiaxiang Zhang, Ya Cheng, Junqiu Liu*, Chun-Hua Dong*, and Xin Ou*. “Soliton formation and spectral translation into visible on CMOS-compatible 4H-silicon-carbide-oninsulator platform.”Light: Science & Applications2022, 11, 141(Co-First Author).

[8]    Zhe Wang, Zhiwei Fang*, Zhaoxiang Liu*, Wei Chu, Yuan Zhou, Jianhao Zhang, Rongbo Wu, Min Wang, Tao Lu, and Ya Cheng*. “On-chip tunable microdisk laser fabricated on Er3+-doped lithium niobate on insulator.” Optics Letters2021, 46(2): 380-383 (Corresponding author, ESI Highly Cited).

[9]    Zhiwei Fang, # Haipeng Luo, # Jintian Lin, Min Wang, Jianhao Zhang, Rongbo Wu, Junxia Zhou, Wei Chu, Tao Lu*, and Ya Cheng*. “Efficient electro-optical tuning of an optical frequency microcomb on a monolithically integrated high-Q lithium niobate microdisk.” Optics Letters, 2019, 44(24): 5953-5956 (Editor’s Pick).

[10]Yuan Zhou, Zhe Wang, Zhiwei Fang*, Zhaoxiang Liu*, Haisu Zhang, Difeng Yin, Youting Liang, Zhihao Zhang, Jian Liu, Ting Huang, Rui Bao, Rongbo Wu, Jintian Lin, Min Wang, and Ya Cheng*, “On-chip microdisk laser on Yb3+-doped thin-film lithium niobate.”Optics Letters, 2021, 46(22):5651-5654 (Corresponding author, Editor’s Pick).

[11]Rui Bao, Lvbin Song, Jinming Chen, Zhe Wang, Jian Liu, Lang Gao, Zhaoxiang Liu, Zhihao Zhang, Min Wang, Haisu Zhang, Zhiwei Fang,* and Ya Cheng*, On-chip coherent beam combination of waveguide amplifiers on Er3+-doped thin film lithium niobate, Optics Letters, 48, 6348-6351 (2023) (Corresponding author, Editor’s Pick).

[12]Zhe Wang, Zhiwei Fang,* Zhaoxiang Liu, Youting Liang, Jian Liu, Jianping Yu, Ting Huang, Yuan Zhou, Haisu Zhang, Min Wang, * And Ya Cheng*, On-Chip Arrayed Waveguide Grating Fabricated on Thin-Film Lithium Niobate, Advanced Photonics Research 2023, 2300228. (Corresponding author, Inside cover).


 


List of papers published annually:

2024

[1]    Yiran Zhu, Shupeng Yu, Zhiwei Fang*, Difeng Yin, Jian Liu, Zhe Wang, Yuan Zhou, Yu Ma, Haisu Zhang, Min Wang, Ya Cheng*, “Integrated Electro-Optically Tunable Narrow-Linewidth III–V Laser,” Advanced Photonics Research 2024, 2400018.

[2]    Shupeng Yu, Zhiwei Fang*, Yuan Zhou, Yiran Zhu, Qinfen Huang, Yu Ma, Jian Liu, Haisu Zhang, Min Wang*, Ya Cheng*, “A high-power narrow-linewidth microlaser based on active-passive lithium niobate photonic integration,” Optics & Laser Technology, 2024,176, 110927.


2023

[30]Yuan Zhou; Yiran Zhu; Zhiwei Fang*; Shupeng Yu; Ting Huang; Junxia Zhou; Rongbo Wu; Jian Liu; Yu Ma; Zhe Wang; Jianping Yu; Zhaoxiang Liu; Haisu Zhang; Zhenhua Wang; Min Wang; Ya Cheng*. “Monolithically Integrated Active Passive Waveguide Array Fabricated on Thin Film Lithium Niobate Using a Single Continuous Photolithography Process.” Laser & Photonics Reviews 2023, 17 2200686. (Corresponding author, selected for a Frontispiece).

[29] Zhuangzhuang Zhu, Zhe Wang, Zhiwei Fang, Dong Lin, Yuan Zhou, Yunxian Zhong, Jian Xu, Jinping He, Ya Cheng, Low Loss 1 × 16/40 Flat Type Beam Splitters on Thin Film Lithium Niobate Using Photolithography Assisted Chemo-Mechanical Etching, Laser & Photonics Reviews 2023, 2301052. (Corresponding author).

[28]Zhe Wang, Zhiwei Fang,* Zhaoxiang Liu, Youting Liang, Jian Liu, Jianping Yu, Ting Huang, Yuan Zhou, Haisu Zhang, Min Wang, * And Ya Cheng*, On-Chip Arrayed Waveguide Grating Fabricated on Thin-Film Lithium Niobate, Advanced Photonics Research 2023, 5, 2300228. (Corresponding author, Inside cover).

[27] Rui Bao, Lvbin Song, Jinming Chen, Zhe Wang, Jian Liu, Lang Gao, Zhaoxiang Liu, Zhihao Zhang, Min Wang, Haisu Zhang, Zhiwei Fang,* and Ya Cheng*, On-chip coherent beam combination of waveguide amplifiers on Er3+-doped thin film lithium niobate, Optics Letters 2023 48, 6348-6351. (Corresponding author, Editor’s Pick).

[26] Yu Ma, Junxia Zhou, Zhiwei Fang*, Yuan Zhou, Ting Huang, Yiran Zhu, Zhe Wang, Jian Liu, Zhaoxiang Liu, Rongbo Wu, Min Wang, Haisu Zhang, and Ya Cheng*, “Monolithic Yb3+-doped thin film lithium niobate microring laser fabricated by photolithography-assisted chemo-mechanical etching technology.” Journal of the Optical Society of America B 2023,40, D1-D4. (Corresponding author).

[25]Ting Huang, Yu Ma, Zhiwei Fang*, Junxia Zhou, Yuan Zhou, Zhe Wang, Jian Liu, Zhenhua Wang, Haisu Zhang, Min Wang, Jian Xu, and Ya Cheng*, “Wavelength-Tunable Narrow-Linewidth Laser Diode Based on Self-Injection Locking with a High-Q Lithium Niobate Microring Resonator.” Nanomaterials 2023,13, 948. (Corresponding author).

[24]Shupeng Yu, Zhiwei Fang*, Zhe Wang, Yuan Zhou, Qinfen Huang, Jian Liu, Rongbo Wu, Haisu Zhang, Min Wang,Ya Cheng*, “On-chip single-mode thin film lithium niobate Fabry-Pérot resonator laser based on Sagnac loop reflectors,”Optics Letters 2023, 48, 2660-2663 (Corresponding author).

[23]Difeng Yin, Shupeng Yu, Zhiwei Fang*, Qinfen Huang, Lang Gao, Zhe Wang, Jian Liu, Ting Huang, Haisu Zhang, Min Wang*, and Ya Cheng*, On-chip electro-optically tunable Fabry-Perot cavity laser on erbium doped thin film lithium niobate, Optical Materials Express 2023,13, 2644-2650 (Corresponding author).


 

2022

[22]Chengli Wang,# Jin Li,# Ailun Yi,#  Zhiwei Fang,#, Liping Zhou, Zhe Wang, Rui Niu, Yang Chen, Jiaxiang Zhang, Ya Cheng, Junqiu Liu*, Chun-Hua Dong*, and Xin Ou*. “Soliton formation and spectral translation into visible on CMOS-compatible 4H-silicon-carbide-oninsulator platform.”Light: Science & Applications2022, 11, 141(Co-First Author).

[21]Junxia Zhou, Ting Huang, Zhiwei Fang*, Rongbo Wu*, Yuan Zhou, Jian Liu, Haisu Zhang, Zhenhua Wang, Min Wang, and Ya Cheng*, “Laser diode-pumped compact hybrid lithium niobate microring laser.” Optics Letters, 2022,47(21):5599-5601 (Corresponding author).

[20]Yiran Zhu, Yuan Zhou, Zhe Wang, Zhiwei Fang,* Zhaoxiang Liu,* Wei Chen, Min Wang, Haisu Zhang, Ya Cheng*. “Electro-optically tunable microdisk laser on Er3+-doped lithium niobate thin film.” Chinese Optics Letters, 2022, 20(1): 011303(Corresponding author).

[19] Youting Liang, Junxia Zhou, Rongbo Wu*, Zhiwei Fang,* Zhaoxiang Liu, Shupeng Yu, Difeng Yin, Haisu Zhang, Yuan Zhou, Jian Liu, Zhenhua Wang, Min Wang, and Ya Cheng*, Monolithic single-frequency microring laser on an erbium-doped thin film lithium niobate fabricated by a photolithography assisted chemo-mechanical etching, Optics Continuum 2022,1, 1193-1201. (Corresponding author).

[18]Zhihao Zhang, Zhiwei Fang,*, Junxia Zhou, Youting Liang, Yuan Zhou, Zhe Wang, Jian Liu ,Ting Huang , Rui Bao, Jianping Yu, Haisu Zhang, Min Wang and Ya Cheng*, “On-Chip Integrated Yb3+-Doped Waveguide Amplifiers on Thin Film Lithium Niobate,” Micromachines,2022, 13(6): 865. (Corresponding author).

[17]Jintian Lin,# Saeed Farajollahi,#Zhiwei Fang,# Ni Yao, Renhong Gao, Jianglin Guan, Li Deng, Tao Lu, Min Wang, Haisu Zhang, Wei Fang, Lingling Qiao, Ya Cheng, Electro-optic tuning of a single-frequency ultranarrow linewidth microdisk laser, Advanced Photonics 2022, 4(3) 036001. (Co-First Author).

 

2021

[16]Junxia Zhou, Youting Liang, Zhaoxiang Liu, Wei Chu, Haisu Zhang, Difeng Yin, Zhiwei Fang,* Rongbo Wu, Jianhao Zhang, Wei Chen, Zhe Wang, Yuan Zhou, Min Wang, And Ya Cheng*. “On-chip integrated waveguide amplifiers on Erbium-doped thin film lithium niobate on insulator.” Laser & Photonics Reviews, 2021, 15(8): 2100030. (Corresponding author).

[15]Zhe Wang, Zhiwei Fang*, Zhaoxiang Liu*, Wei Chu, Yuan Zhou, Jianhao Zhang, Rongbo Wu, Min Wang, Tao Lu, and Ya Cheng*. “On-chip tunable microdisk laser fabricated on Er3+-doped lithium niobate on insulator.” Optics Letters, 2021, 46(2): 380-383 (Corresponding author, ESI Highly Cited).

[14] Chengli Wang,#Zhiwei Fang,# Ailun Yi,# Bingcheng Yang, Zhe Wang, Liping Zhou, Chen Shen, Yifan Zhu, Yuan Zhou, Rui Bao, Zhongxu Li, Yang Chen, Kai Huang, Jiaxiang Zhang*, Ya Cheng*, Xin Ou*. “High-Q microresonators on 4H-silicon-carbide-on-insulator platform for nonlinear photonics.”Light: Science & Applications2021, 10, 139 (Co-First Author: Front cover paper).

[13] Yuan Zhou, Zhe Wang, Zhiwei Fang*, Zhaoxiang Liu*, Haisu Zhang, Difeng Yin, Youting Liang, Zhihao Zhang, Jian Liu, Ting Huang, Rui Bao, Rongbo Wu, Jintian Lin, Min Wang, and Ya Cheng*, “On-chip microdisk laser on Yb3+-doped thin-film lithium niobate.”Optics Letters, 2021, 46(22):5651-5654 (Corresponding author, Editor’s Pick).

[12]DiFeng Yin, Yuan Zhou, Zhaoxiang Liu, Zhe Wang, Haisu Zhang, Zhiwei Fang*, Wei Chu*, Rongbo Wu, Jianhao Zhang, Wei Chen, Min Wang, and Ya Cheng*, “Electro-optically tunable microring laser monolithically integrated on lithium niobate on insulator.” Optics Letters, 2021, 46(9): 2127-2130 (Corresponding author).

[11]Zhe Wang, Chaohua Wu, Zhiwei Fang*, Min Wang, Jintian Lin, Rongbo Wu, Jianhao Zhang, Jianping Yu, Miao Wu, Wei Chu, Tao Lu, Gang Chen*, and Ya Cheng*, “High-quality-factor optical microresonators fabricated on lithium niobate thin film with an electro-optical tuning range spanning over one free spectral range.” Chinese Optics Letters, 2021, 19(6): 060002 (Corresponding author).

[10]Chaohua Wu, Zhiwei Fang*, Jintao Fan*, Gang Chen and Ya Cheng. “Dissipative Kerr solitons in optical microresonators with the Raman effect and third-order dispersion.” Chinese Physics B, 2021, 30(5):054206 (Corresponding author).

[9]    Zhiwei Fang, Jintian Lin, Rongbo Wu, Min Wang, and Ya Cheng, Lithium niobate nanophotonics at ECNU, in 70 years of excellence: ECNU’s ongoing commitment to cutting-edge, cross-disciplinary research(Science/AAAS,Washington DC 2021), pp. 15-16.

 

Before 2020

[8]    Zhiwei Fang, # Sanaul Haque, # Saeed Farajollahi, Haipeng Luo, Jintian Lin, Rongbo Wu, Jianhao Zhang, Zhe Wang, Min Wang, Ya Cheng*, and Tao Lu*. “Polygon coherent modes in a weakly perturbed whispering gallery microresonator for efficient second harmonic, optomechanical, and frequency comb generations.” Physical Review Letters, 2020, 125(17): 173901 (The cover of this week's issue).

[7]    Yuanlin Zheng,#Zhiwei Fang,# Shijie Liu, Ya Cheng*, and Xianfeng Chen*. “High-Q Exterior whispering-gallery modes in a double-layer crystalline microdisk resonator.” Physical Review Letters, 2019, 122(25): 253902 (Co-First Author).

[6]    Zhiwei Fang, # Haipeng Luo, # Jintian Lin, Min Wang, Jianhao Zhang, Rongbo Wu, Junxia Zhou, Wei Chu, Tao Lu*, and Ya Cheng*. “Efficient electro-optical tuning of an optical frequency microcomb on a monolithically integrated high-Q lithium niobate microdisk.” Optics Letters, 2019, 44(24): 5953-5956 (Editor’s Pick).

[5]    Zhiwei Fang, # Sanaul Haque, # Jintian Lin, Rongbo Wu, Jianhao Zhang, Min Wang, Junxia Zhou, Muniyat Rafa, Tao Lu*, and Ya Cheng*, “Real-time electrical tuning of an optical spring on a monolithically integrated ultrahigh Q lithium nibote microresonator.” Optics Letters, 2019, 44(5): 1214-1217.

[4]    Jianhao Zhang,# Zhiwei Fang,# Jintian Lin, Junxia Zhou, Min Wang, Rongbo Wu, Renhong Gao, and Ya Cheng*, “Fabrication of crystalline microresonators of high quality factors with a controllable wedge angle on lithium niobate on insulator.” Nanomaterials, 2019, 9(9): 1218 (Co-First Author).

[3]    Zhiwei Fang, Yingxin Xu, Min Wang, Lingling Qiao, Jintian Lin, Wei Fang*, and Ya Cheng*, “Monolithic integration of a lithium niobate microresonator with a free-standing waveguide using femtosecond laser assisted ion beam writing.” Scientific Reports, 2017, 7(1): 1-6.

[2]    Zhiwei Fang, Ni Yao, Min Wang, Jintian Lin, Jianhao Zhang, Rongbo Wu, Lingling Qiao, Wei Fang, Tao Lu*, and Ya Cheng*, “Fabrication of high quality factor lithium niobate double-disk using a femtosecond laser.” International Journal of Optomechatronics, 2017, 11(1): 47-54.

[1]    Zhiwei Fang, Jintian Lin, Min Wang, Zhengming Liu, Jinping Yao, Lingling Qiao, and Ya Cheng*, “Fabrication of a microresonator-fiber assembly maintaining a high-quality factor by CO2 laser welding.” Optics Express, 2015, 23(21): 27941-27946.



Google Scholar link: 

https://scholar.google.com/citations?user=wAEVuCUAAAAJ&hl=zh-CN&oi=ao


荣誉及奖励

1.博士研究生国家奖学金(2016年);
2.上海市优秀毕业生(2018届);
3.中国科学院大恒光学奖学金优秀奖(2017年)

4.中国科学院大学优秀学生干部(2014-2015学年);

5.中国科学院大学三好学生标兵(2015-2016学年)。