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邱硕阳 QIU SHUO YANG 副教授 所属学院:信息工程学院 导师类别:硕导 科研方向:集成光电器件 高速射频器件 光通信 联系方式: williamqiusy@gdut.edu.cn 硕士招生学院:信息工程学院 |
个人简述:
邱硕阳,博士,硕士研究生导师,在美国长期从事高速高功率柔性电子器件、三维异质半导体器件设计及开发应用,于华为公司主要从事国产射频前端模组器件及工艺开发、微型板级工艺及可靠性开发、微型传感器系统开发。
现主要从事集成光电器件、集成高速射频器件、信号处理、光通信领域、光电材料器件等方向研究,关注材料物理基本理论、器件仿真设计机制、工艺制备开发及系统测试应用。
学科领域:
科学学位:信息与通信工程(0810)、光学工程(0803)
专业学位:信息与通信工程(0810)、光学工程(0803)
教育背景:
2012-2014 华南理工大学 信息工程(电联班) 学士
2014-2016 英国爱丁堡大学 电子电气工程 学士
2017-2022 美国威斯康星麦迪逊分校 电子计算机工程 博士
工作经历:
2023-2024 华为技术有限公司 硬件工程与产品开发管理部 高级工程师、SE
2024-至今 广东工业大学 副教授
学术兼职:
Guest Editor for Electronics:advances in Semiconductor Devices and Applications, 2024.
Reviewers: AIP advance, JAP, AMT, IEEE journal of microwave, Colloid and Surface Science etc.
主要论文:
(1) Qiu, S., Zhang, H., Yan, Q., Katehi, L., Gong, S., Cai, Z. and Ma, Z., "Flexible Lumped Microwave Passive Components and Filters on Cellulose Nanofibril Substrates". IEEE Journal of Microwaves, 3(1), pp.96-101(2022).(Q1)
(2) Qiu, S., Gong, J., Zhou, J., Ng, T.K., Singh, R., Sheikhi, M., Ooi, B.S. and Ma, Z., "Interfacial band parameters of ultrathin ALD-ZrO2 on Ga-polar GaN through XPS measurements". AIP Advances, 13(5) (2023). (Editor’s pick)
(3) Qiu, S., Huang, Z. and Fu, F., "Enhancing lithium storage performance of Carbon/SiOx composite via coating edge-nitrogen-enriched carbon. International Journal of Hydrogen Energy", 91, pp.1355-1364 (2024). (Q1)
(4) Zhang, D., Qiu, S#., Huang, W., Yang, D., Wang, H. and Fang, Z., "Mechanically strong and electrically stable polypyrrole paper using high molecular weight sulfonated alkaline lignin as a dispersant and dopant". Journal of colloid and interface science, 556, pp.47-53(2019). (Q1)
(5) Fan, D., Fang, Z., Xiong, Z., Fu, F., Qiu, S*. and Yan, M., "Self-assembled high polypyrrole loading flexible paper-based electrodes for high-performance supercapacitors". Journal of Colloid and Interface Science, 660, pp.555-564(2024. (Q1)
(6) Fang, Z#., Zhang, H#., Qiu, S#., Kuang, Y., Zhou, J., Lan, Y., Sun, C., Li, G., Gong, S. and Ma, Z., "Versatile wood cellulose for biodegradable electronics". Advanced Materials Technologies, 6(2), p.2000928(2021). (Q1)
(7) Zhang, H., Lan, Y., Qiu, S., Min, S., Jang, H., Park, J., Gong, S. and Ma, Z., "Flexible and stretchable microwave electronics: Past, present, and future perspective". Advanced Materials Technologies, 6(1), p.2000759(2021). (Q1)
(8) Gong, J#., Su, X#., Qiu, S., Zhou, J., Liu, Y., Li, Y., Kim, D., Tsai, T.H., Ng, T.K., Ooi, B.S. and Ma, Z., "Effects of UV/O3 and O2 plasma surface treatments on the band-bending of ultrathin ALD-Al2O3 coated Ga-polar GaN". Journal of Applied Physics, 135(11) (2024).
(9) Gong, J., Kim, D., Jang, H., Alema, F., Wang, Q., Zhou, J., Li, Y., Ng, T.K., Qiu, S., Liu, Y. and Sheikhi, M., "Characteristics of grafted monocrystalline Si/β-Ga2O3p–n heterojunction". Applied Physics Letters, 124(26) (2024). (Q1)
(10) Zhou, J., Gong, J., Sheikhi, M., Dheenan, A., Wang, Q., Abbasi, H., Liu, Y., Qiu, S., Adamo, C., Marshall, P., Wriedt, N. and Cheung, C., "Synthesis and characteristics of a monocrystalline GaAs/β-Ga2O3 pn heterojunction". Applied Surface Science, 663, p.160176(2024). (Q1)
(11) Abbasi, H.N., Sheikhi, M., Kim, D., Singh, R., Gong, J., Zhou, J., Zhang, Q., Qiu, S., Adamo, C., Marshall, P. and Cheung, C., "Highly Strained AlGaAs‐GaAsP Nanomembranes‐Based High‐Performance Diode". Advanced Materials Interfaces, p.2400588(2024). (Q1)
(12) Zhou, J., Gong, J., Lal, S., Kim, J., Lin, W., Chen, C., Li, C., Lu, Y., Qiu, S., Dong, Y. and German, L., "Characteristics of native oxides-interfaced GaAs/Ge np diodes". IEEE Electron Device Letters(2024). (Q1)
(13) Peng, D., Hong, W., Xiao, H., Han, Y., Huang, Q., Qiu, S., Li, J., Xiang, M., Fu, S. and Qin, Y., "Freely tunable phase-locked dual-frequency microwave signal generation from injection-locked broadband optoelectronic oscillator". Optics Express, 32(23), pp.41857-41869(2024). (Q1)
(14) H. Xiao, D. Peng, Y. Han, Q. Huang, S. Qiu, J. Li, M. Xiang, S. Fu, and Y. Qin, "Phase-coded coherent microwave pulse generation based on an actively mode-locked optoelectronic parametric oscillator", Opt. Lett. 49, 6956-6959(2024). (Q1)
(15) Liu, F., Xu, X., Qiu, S., Qing, C. and Tao, D., "Simple to complex transfer learning for action recognition". IEEE Transactions on Image Processing, 25(2), pp.949-960(2016). (Q1)
(16) Miao, J., Xu, X., Qiu, S., Qing, C. and Tao, D., "Temporal variance analysis for action recognition". IEEE Transactions on Image Processing, 24(12), pp.5904-5915(2015). (Q1)
(17) Chen, P., Qiu, S., Wang, Y. and Li, Y., 2015, November. "Identifying the pre-transition state during biological processes by hidden Markov model". In 2015 IEEE International Conference on Bioinformatics and Biomedicine (BIBM) (pp. 555-562) (2015).
(18) Qiu, S*., Li, J., Guo, S., Zhu, Z., "Enhanced ESPRIT for DOA Estimation with a ULA of Sensors". IEEE Sensor Journal, under revision (2024). (Q2)
(19) Fu, Z., Li, J., Yang, G., Ren, X., Qiu, S*. and Li, J., "Modified ESPRIT and Unitary-Transformation Form for Computationally Efficient DOA Estimation on FPGA", IEEE Transactions on Instrumentation and Measurement, accepted (2024). (Q1)
(20) Fu, F., Huang, Z., Qiu, S*. "SiOx Encapsulated into Nitrogen-enriched Lignin Porous Carbon for Fast Lithium Storage", Industrial & Engineering Chemistry Research (2025). (Q1)
科研项目:2024-2027 国家重点研发计划 课题负责人
教学活动:半导体材料,半导体工艺与设备
我的团队:隶属于先进光子技术研究院,团队专注于光纤通信、光纤传感、保密通信等方面的研究工作。
研究生培养:研究方向为集成光电器件、高速射频器件、异质集成薄膜光源器件、有机光电材料器件等,将会提供从材料基本物理机理、器件理论、仿真设计、工艺制备、器件测试表征、系统应用的多方面及全链条培养方向。
培养方案以‘一专多能’为目标进行培养,能力体系大致可分为:
1 基础理论池能力:电磁场电磁波、半导体及固态物理、集成光学、光通信、射频微电子器件。
2 器件设计仿真能力:Lumerical FDTD, HFSS, COMSOL. ADS. Silvaco等
3 软件编程开发能力:matlab、python等
4 半导体工艺开发能力:光刻、刻蚀、镀膜等工艺理论及开发能力
5 表征测试能力:AFM、SEM、XPS等微观表征使用分析能力;光电芯片平台搭建测试能力
6 知识分析能力:资料(文献 论文)获取、分析、搭建知识体系,培养独立科研能力。
7 软能力:沟通合作技能、汇报演讲能力。
对口就业领域:光通信、自动驾驶、消费者电子、半导体加工、集成微电子领域。
就业岗位/方向:
科研:推荐海内外高校对口方向进行博士研究生深造
就业:光学工程师、射频工程师、器件设计工程师、工艺开发工程师、仪器工程师等。