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    程增光
    青年研究员 、博士生导师
    电        话:
    研  究  所:
    邮        箱:zgcheng@fudan.edu.cn
    个人网址:
    办公地址:
    • 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、光子存储与计算

    新型低维光电集成器件

    新型非易失性存储器件

     

    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

    20201-至今 复旦大学,微电子学院,青年研究员,博士生导师

    20159-20201 牛津大学,材料系,博士后

    20131-20149 哈佛大学,化学与化学生物系,访问学者


    发表论文:

    [1] Cheng, Z.; Ríos, C.; Youngblood, N.; Wright, C. D.; Pernice, W. H. P.; Bhaskaran, H.*, Device-level photonic memories and logic applications using phase-change materials. Adv Mater 2018, 30(32), 1802435.

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

    [3] Liu, J.#; Fu, T.#; Cheng, Z. #; Jin, L.; Hong, G.; Duvvuri, M.; Zhou, T.; Jiang, Z.; Kruskal, P.; Xie, C.; Suo, Z.; Fang, Y.*; Lieber, C*., Syringe-injectable electronics. Nat Nanotechnol 2015, 10(7), 565-652 (Cover, #equal contribution).

    [4] Cheng, Z.; Hou, J.; Zhou, Q.; Li, T.; Li, H.; Yang, L.; Jiang, K.; Wang, C.; Li, Y. C.*; Fang, Y*., Sensitivity limits and scaling of bioelectronic graphene transducers. Nano Lett 2013, 13(6), 2902-2907.

    [5] Cheng, Z.; Zhou, Q.; Wang, C.; Li, Q.; Wang, C.*; Fang, Y.*, Toward Intrinsic Graphene Surfaces: A Systematic Study on Thermal Annealing and Wet-Chemical Treatment of SiO2-Supported Graphene Devices. Nano Lett 2011, 11(2), 767-771.

    [6] Zhang, T.#; Cheng, Z.#; Wang, Y.; Li, Z.; Wang, C.; Li, Y.; Fang, Y.*, Self-Assembled 1-Octadecanethiol Monolayers on Graphene for Mercury Detection. Nano Lett 2010, 10(11), 4738-4741. (#equal contribution)

    [7] Cheng, Z.; Li, Q.; Li, Z.; Zhou, Q.; Fang, Y.*, Suspended graphene sensors with improved signal and reduced noise. Nano Lett 2010, 10(5), 1864-1868.

    [8] Xia, Q.; Berggren, K. K.; Likharev, K.; Strukov, D. B.; Jiang, H.; Mikolajick, T.; Querlioz, D.; Salinga, M.; Erickson, J.; Pi, S.; Xiong, F.; Lin, P.; Li, C.; Xiong, S.; Hoskins, B.; Daniels, M.; Madhavan, A.; Liddle, J.; McClelland, J.; Yang, Y.; Rupp, J.; Nonnenmann, S.; Gong, N.; Cheng, K.-T. T.; Lastras Montano, M. A.; Talin, A. A.; Salleo, A.; Shastri, B. J.; Ferreira de Lima, T.; Tait, A. N.; Shen, Y.; Meng, H.; Roques-Carmes, C.; Cheng, Z.; Bhaskaran, H.; Jariwala, D.; Wang, H.; Segall, K.; Shainline, J.; Yang, J. J.; Roy, K.; Datta, S.; Raychowdhury, A. Roadmap on emerging hardware and technology for machine learning [Invited]. Nanotechnology 2020, DOI:10.1088/1361-6528/aba70f.

    [9] Li, X.; Youngblood, N.; Cheng, Z.; Carrillo, S. G.-C.; Gemo, E.; Pernice, W. H. P.; Wright, C. D.; Bhaskaran, H. Experimental investigation of silicon and silicon nitride platforms for phase-change photonic in-memory computing. Optica 2020, 7(3), 218.

    [10] Farmakidis, N.; Youngblood, N.; Li, X.; Tan, J.; Swett, J. L.; Cheng, Z.; Wright, C. D.; Pernice, W. H. P.; Bhaskaran, H. Plasmonic nanogap enhanced phase-change devices with dual electrical-optical functionality. Sci Adv 2019, 5(11), eaaw2687.

    [11] Sarwat, S. G.; Cheng, Z.; Youngblood, N.; Alias, M. S.; Sinha, S.; Warner, J.; Bhaskaran, H. Strong Opto-Structural Coupling in Low Dimensional GeSe3 Films. Nano Lett 2019, 19(10), 7377.

    [12] Youngblood, N.; Ríos, C.; Gemo, E.; Feldmann, J.; Cheng, Z.; Baldycheva, A.; Pernice, W. H. P.; Wright, C. D.; Bhaskaran, H.*, Tunable volatility of Ge2Sb2Te5 in integrated photonics. Adv Fun Matter 2019, 29(11), 1807571.

    [13] Ríos, C.#; Youngblood, N.#; Cheng, Z.; Gallo, M. L.; Pernice, W. H. P.; Wright, C. D.; Sebastian, A.*; Bhaskaran, H.*, In-memory computing on a photonic platform. Sci Adv 2019, 5(2), eaau5759.

    [14] Li, X.; Youngblood, N.; Ríos, C.; Cheng, Z.; Wright, C. D.; Pernice, W. P. H.; Bhaskaran, H.*, Fast and reliable storage using a 5 bit, nonvolatile photonic memory cell. Optica 2019, 6(1), 1-6.

    [15] Ríos, C.; Stegmaier, M.; Cheng, C.; Youngblood, N.; Wright, C. D.; Pernice, W. H. P.; Bhaskaran, H., Controlled switching of phase-change materials by evanescent-field coupling in integrated photonics [Invited]. Opt Mater Express 2018, 8(9), 2455-2470.

     

    荣誉称号:

    中国科学院院长优秀奖,2014