张斌预聘副研究员物理学院硕士生导师
研究方向:光学;半导体电子结构;超快载流子动力学;光与物质相互作用;非线性光学;纳米光子学
邮箱:bzhang@usst.edu.cn 更新时间:2026-06-02
Bin ZhangTenure-track Associate ResearcherSchool of PhysicsMaster's Supervisor
Research: Optics; Semiconductor Electronic Structure; Ultrafast Carrier Dynamics; Light-Matter Interactions; Nonlinear Optics; Nanophotonics
Email: bzhang@usst.edu.cn | Last updated: 2026-06-02
教育背景与工作经历
教育背景
2018 年,中国科学院上海技术物理研究所硕博连读博士;期间赴瑞典林雪平大学联合培养,在 Irina Buyanova 教授指导下开展低维半导体光学研究。
工作经历
瑞典林雪平大学博士后,聚焦低维半导体的光谱物理与非线性光学。
科研项目
1. 国家自然科学基金青年项目, 2025-2027,主持
2. 教育部海外专项人才项目,2025-2027,主持
3. 上海市白玉兰人才计划浦江项目A类,2025-2026,主持
4. 上海市“科技创新行动计划”自然科学基金面上项目,2024-2027,主持
代表性论著
Selected first-author publications:
1. Photoactivated Second Harmonic Generation in Centrosymmetric Double Perovskites, ACS Photonics, 2023, 10(9): 3350-3358.
2. Lattice dynamics and electron-phonon coupling in double perovskite Cs2NaFeCl6, J. Phys. Chem. C 2023, 127(4): 1908–1916. (Citation=36)
3. Anomalously Strong Second-Harmonic Generation in GaAs Nanowires via Crystal-Structure Engineering. Advanced Functional Materials 31.36 (2021): 2104671.
4. Self-assembled nanodisks in coaxial GaAs/GaAsBi/GaAs core–multi shell nanowires. Nanoscale 12.40 (2020): 20849-20858.
5. Band structure of wurtzite GaBiAs nanowires. Nano Letters 19.9 (2019): 6454-6460.
6. Effect of exciton transfer on recombination dynamics in vertically nonuniform GaAsSb epilayers. Applied Physics Letters 114.25 (2019): 252101.
7. Photoreflectance and photoreflectance excitation study of optical transitions in GaAsBi/GaAs heterostructure. Journal of Applied Physics 123.3 (2018): 035702.
8. A modified optics based technique for suppressing spurious signals in photoreflectance spectra. Review of Scientific Instruments 88.10 (2017): 106103.
主讲课程
《固体光谱学》(研究生课程)
荣誉与社会服务
荣誉与社会服务
受邀担任 Laser & Photonics Reviews、Advanced Optical Materials 等国际期刊审稿人。积极参与国际与国内重要学术会议,多次受邀作学术报告。获上海市浦江人才计划(2024)资助。
Education & Work Experience
Education
2018, Ph.D., Shanghai Institute of Technical Physics, Chinese Academy of Sciences; visiting Ph.D. student at Linköping University, Sweden, under the supervision of Prof. Irina Buyanova, focusing on the optical properties of low-dimensional semiconductors.
Work Experience
Postdoctoral researcher, Linkoping University, Sweden, focusing on the spectral physics and nonlinear optical properties of low-dimensional semiconductor materials.
Research Projects
1. National Natural Science Foundation of China, 2025-2027, Principal Investigator.
2. Ministry of Education overseas talent program, 2025-2027, Principal Investigator.
3. Shanghai Magnolia Talent Plan Pujiang Project, 2025-2026, Principal Investigator.
4. Natural Science Foundation of Shanghai, 2024-2027, Principal Investigator.
Selected Publications
Selected first-author publications:
1. Photoactivated Second Harmonic Generation in Centrosymmetric Double Perovskites, ACS Photonics, 2023, 10(9): 3350-3358.
2. Lattice dynamics and electron-phonon coupling in double perovskite Cs2NaFeCl6, J. Phys. Chem. C 2023, 127(4): 1908–1916. (Citation=36)
3. Anomalously Strong Second-Harmonic Generation in GaAs Nanowires via Crystal-Structure Engineering. Advanced Functional Materials 31.36 (2021): 2104671.
4. Self-assembled nanodisks in coaxial GaAs/GaAsBi/GaAs core–multi shell nanowires. Nanoscale 12.40 (2020): 20849-20858.
5. Band structure of wurtzite GaBiAs nanowires. Nano Letters 19.9 (2019): 6454-6460.
6. Effect of exciton transfer on recombination dynamics in vertically nonuniform GaAsSb epilayers. Applied Physics Letters 114.25 (2019): 252101.
7. Photoreflectance and photoreflectance excitation study of optical transitions in GaAsBi/GaAs heterostructure. Journal of Applied Physics 123.3 (2018): 035702.
8. A modified optics based technique for suppressing spurious signals in photoreflectance spectra. Review of Scientific Instruments 88.10 (2017): 106103.
Honors and Service
Honors and Service
Invited reviewer for international journals including Laser & Photonics Reviews and Advanced Optical Materials. Active participant in major international and domestic conferences, with multiple invited presentations. Supported by the Shanghai Pujiang Talent Program (2024).