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    程增光
    教授 、博士生导师
    电         话:
    研  究  所:
    邮         箱:zgcheng@fudan.edu.cn
    个人网址:
    办公地址:邯郸校区跃进楼2021
    • 研究方向
    • 教育背景
    • 学术经历
    • 荣誉称号
  • 研究方向:

    硅基光电子集成与设计、光子类脑计算、光电融合计算

    相变材料与光学忆阻器件、新型非易失性存储器件

    新型光电材料与集成器件

     

    教育背景

    20099-20151 中国科学院大学,国家纳米科学中心,博士

    20059-20097 西安电子科技大学,技术物理学院,学士

     

    学术经历

    202512月-至今复旦大学,集成电路与微纳电子创新学院,教授

    20201月-202512月复旦大学,微电子学院/集成电路与微纳电子创新学院,青年研究员

    20159月-20201月牛津大学,材料系,博士后(合作导师:Harish Bhaskaran教授)

    20131月-20149月哈佛大学,化学与化学生物系,访问学者


    荣誉获奖:

    国家海外高层次青年人才计划,2019

    中国科学院院长优秀奖,2014

     

    简要介绍:

    课题组科研条件优越,拥有充足的科研经费及完善的工艺表征与测试平台。团队每年享有稳定的硅光流片机会,并与行业头部企业保持紧密的产学研合作关系。课题组面向海内外长期招收博士后研究人员、博士及硕士研究生,热忱欢迎对硅基光电子前沿研究与应用技术具有浓厚兴趣的青年人才加入团队,共同探索学科发展的无限可能。


    发表论文:

    [1] Z. Liu, T. Zhao*, Y. Bai, S. Duan, Y. Yu, Z. Wang*, Z. Cheng*(通讯作者), Machine Vision Enabled by Two-Dimensional Ferroelectric Materials. Adv. Mater. Technol. 2026, e71050.

    [2] J. Shen†, C. Gao†, A. Liu†, Y. Sun, H. Wang, T. Jiang, M. Zhu, Z. Song, Z. Zhang, Z. Cheng*(通讯作者), P. Zhou*, A Phase-Transition-Driven All-Optical Neuron with Sub-Nanosecond Nonlinear Activation. Adv. Mater. 2026, 38(21), e22820.

    [3] W. Huang†, Y. Zhong†, H. Pu†, J. Che, J. Li, G. Wang, J. Shen*, Z. Cheng*(通讯作者), P. Zhou*, Monolithic Amplitude-Phase Modulator for Scalable Optical Convolution. Adv. Funct. Mater. 2026, e30161.

    [4] W. Huang†, H. Wang†, S. Wang†, M. Huang, Y. Sun, W. Weng, Z. Song, J. Shen*, S. Chen, Z. Cheng*(通讯作者), P. Zhou*, Elemental Selenium Phase-Change Material for Scalable Ultra-Low-Loss Programmable Photonics. Adv Mater 2026, 38(15), e20056.

    [5] Z. Han, C. Gao, G. Wang, J. Shen*, Z. Cheng*(通讯作者), P. Zhou*. Integrated Programmable Diffraction Neural Network Based on Phase-Change Material (Invited). Acta Optica Sinica 2026, 46(4), 0420001.

    [6] G. Wang†, J. Che†, C. Gao†, Z. Han, J. Shen*, Z. Cheng*(通讯作者), P. Zhou*, Integrated Neuromorphic Photonic Computing for AI Acceleration: Emerging Devices, Network Architectures, and Future Paradigms. Adv Mater 2025, e08029.

    [7] G. Wang†, J. Shen†, Y. He†, Z. Han, W. Huang, H. Wang, Z. Cheng*(讯作者), P. Zhou*, Programmable Non-Volatile Photonic Analog-to-Digital Converter Based on Back-End-of-Line Compatible Phase-Change Materials. Adv Mater 2025, 37(16), 2419444.

    [8] J. Li†, R. Hu†, F. Wang, J. Shen*, Z. Cheng*(通讯作者), P. Zhou*, A Field Programmable Gate Array-Assisted Optoelectronic Emulator for Photonic Neuromorphic Computing. Adv. Intell. Syst. 2025, 7(12), 2500223.

    [9] T. Liu†, H. Wang†, Z. Zhang†, J. Shen*, Z. Zhang, Z. Cheng*(通讯作者), P. Zhou*, Phase-Change-Assisted Electrostatic Doping Enabling Nonvolatile Programmability of 2D Materials. Small 2025, 21(36), e01923.

    [10] H. Wang, Z. Zhang, W. Huang, P. Chen, Y. He, Z. Ming, Y. Wang, Z. Cheng*(通讯作者), J. Shen*, Z. Zhang*, Programmable Optical Encryption Based on Electrical-Field-Controlled Exciton–Trion Transitions in Monolayer WS2, ACS Appl. Mater. Interfaces 2024, 16(31), 41099.

    [11] X. Jiang, M. Ye, Y. Li, X. Fu*, T. Li, Q. Zhao, J. Wang, T. Zhang, J. Miao, Z. Cheng*(通讯作者), Multiframe-integrated, in-sensor computing using persistent photoconductivity. J. Semicond. 2024, 45(9), 092401.

    [12] X. Chen†, Y. Xue†, Y. Sun†, J. Shen, S. Song, M. Zhu, Z. Song, Z. Cheng*(通讯作者), P. Zhou*, Neuromorphic Photonic Memory Devices Using Ultrafast, Non-volatile Phase-change Materials. Adv. Mater. 2023, 35(37), 2203909.

    [13] J. Y. S. Tan†, Z. Cheng†(共同一作), J. Feldmann, X. Li, N. Youngblood, U. E. Ali, C. D. Wright, W. H. P. Pernice, H. Bhaskaran*, Monadic Pavlovian associative learning in a backpropagation-free photonic network. Optica 2022, 9(7), 792.

    [14] C. Gao, J. Shen, X. Chen, Z. Cheng*(通讯作者), P. Zhou, Structural optimization of integrated non-volatile photonic memory towards high storage density and low energy consumption. Opt. Mater. Express 2022, 12(7), 2668.

    [15] J. Shen, Z. Cheng*(通讯作者), P. Zhou*, Optical and optoelectronic neuromorphic devices based on emerging memory technologies. Nanotechnology 2022, 33(37), 372001.

    [16] Z. Cheng* (通讯作者), T. Milne, P. Salter, J. S. Kim, S. Humphrey, M. Booth, H. Bhaskaran*, Antimony thin films demonstrate programmable optical nonlinearity. Sci. Adv. 2021, 7(1), eabd7097.

    [17] Z. Cheng, C. Ríos, N. Youngblood, C. D. Wright, W. H. P. Pernice, H. Bhaskaran*, Device-Level Photonic Memories and Logic Applications Using Phase-Change Materials. Adv. Mater. 2018, 30(32), 1802435.

    [18] Z. Cheng, C. Ríos, W. H. P. Pernice, C. D. Wright, H. Bhaskaran*, On-chip photonic synapse. Sci. Adv. 2017, 3(9), e1700160.

    [19] J. Liu†, T. Fu†, Z. Cheng†(共同一作), L. Jin, G. Hong, M. Duvvuri, T. Zhou, Z. Jiang, P. Kruskal, C. Xie, Z. Suo, Y. Fang*, C. M. Lieber*, Syringe-injectable electronics. Nat. Nanotechnol. 2015, 10(7), 565.

    [20] Z. Cheng†, J. Hou†, Q. Zhou, T. Li, H. Li, L. Yang, K. Jiang, C. Wang, Y. Li*, Y. Fang*, Sensitivity Limits and Scaling of Bioelectronic Graphene Transducers. Nano Lett. 2013, 13(6), 2902.

    [21] Z. Cheng, Q. Zhou, C. Wang, Q. Li, C. Wang*, Y. Fang*, Toward Intrinsic Graphene Surfaces: A Systematic Study on Thermal Annealing and Wet-Chemical Treatment of SiO2-Supported Graphene Devices. Nano Lett. 2011, 11(2), 767.

    [22] T. Zhang†, Z. Cheng†(共同一作), Y. Wang, Z. Li, C. Wang, Y. Li, Y. Fang*, Self-Assembled 1-Octadecanethiol Monolayers on Graphene for Mercury Detection. Nano Lett. 2010, 10(11), 4738.

    [23] Z. Cheng, Q. Li, Z. Li, Q. Zhou, Y. Fang*, Suspended Graphene Sensors with Improved Signal and Reduced Noise. Nano Lett. 2010, 10(5), 1864.