前沿科学研究

半导体异质材料与器件中心

Semiconductor Heterogeneous Materials and Devices Center

张吉化

研究员

联系方式

  • Tel:
  • E-mail:zhangjihua@sslab.org.cn

教育/工作经历

张吉化,巴黎萨克雷大学和华中科技大学双博士学位,曾在罗切斯特大学和澳大利亚国立大学从事博士后研究。主要从事超表面和集成光子学研究,在相关领域共发表SCI论文50篇,其中第一/或通讯作者论文25篇,含Science Advances 1篇、Light: Science & Applications 1篇、Optica 1篇、Nano Letters 1篇、Advanced Optical Materials 1篇、Photonics Research 1篇和Nanophotonics 2篇,受邀在Advanced Materials和APL Quantum上撰写相关领域的综述论文,另在Nature Photonics和Nature Nanotechnology等知名学术期刊上合作发表论文25篇,国际学术会议口头报告20余次包括6次特邀报告。谷歌学术引用一千二百余次,h因子20,担任Light: Science & Applications、Optica和Laser & Photonics Review等期刊的审稿人。

教育经历

  1. 2016.06,巴黎萨克雷大学,物理,博士
  2. 2016.06,华中科技大学,光学工程,博士
  3. 2011.06,华中科技大学,光信息科学与技术,学士

工作经历

  1. 2024.01-今, 松山湖材料实验室,半导体异质材料与器件中心,研究员 
  2. 2020.01-2023.11,澳大利亚国立大学,物理系,博士后研究员,合作导师:Andrey Sukhorukov,Dragomir Neshev
  3. 2016.11-2020.01,罗切斯特大学,光学系,博士后,合作导师:Chunlei Guo
  4. 2016.07-2016.11,中国科学院物理研究所,纳米物理与器件实验室,研究助理,合作导师:张建军

研究方向

  1. 非线性超表面 
  2. 超表面
  3. 集成光子学

科研项目

  1. 松山湖材料实验室主任基金,XMYS20230020,半导体异质材料与器件,2023/08-2028/07,2000万,在研,骨干参与
  2. Australian Research Council,Discovery Project,DP190101559,Optical frequency conversion in nonlinear dielectric metasurfaces,2020/01-2023/12,45万澳元,已结题,联合主持

代表性论著#表示共同一作,*表示通讯作者)

  1. Jihua Zhang#,*, Jinyong Ma#, Neuton Li, Shaun Lung, and Andrey A. Sukhorukov*, Single-shot characterization of photon indistinguishability with dielectric metasurfaces, Optica 11(6), 753-758 (2024).
  2. Jihua Zhang*, and Yuri Kivshar*, Quantum metaphotonics: recent advances and perspective, APL Quantum 1, 020902 (2024).
  3. Jinyong Ma#,*, Jihua Zhang#,*, Jake Horder#, Andrey A. Sukhorukov, Milos Toth, Dragomir N. Neshev, and Igor Aharonovich*, Engineering Quantum Light Sources with Flat Optics, Advanced Materials 2313589 (2024).
  4. Ran Wei, Jihua Zhang*, Sohail A. Jalil, Mohamed ElKabbash, and Chunlei Guo*, Ultrathin film optical coatings for all-optical mathematical operations with ultrahigh numerical aperture, Applied Physics Letters 123(25), 251102 (2023).
  5. Jinyong Ma#,*, Jihua Zhang#, Yuxin Jiang, Tongmiao Fan, Matthew Parry, Dragomir N. Neshev, and Andrey A. Sukhorukov, Polarization Engineering of Entangled Photons from a Lithium Niobate Nonlinear Metasurface, Nano Letters 23(17), 8091-8098 (2023).
  6. Jihua Zhang#, and Andrey A. Sukhorukov#, Complex structure and efficient characterization of multiphoton split states in integrated circuits, Physical Review A 107(6), 062615 (2023).
  7. Kwang Jin Lee*, Ran Wei, Ye Wang, Jihua Zhang, Wenchi Kong, Sandeep K. Chamoli, Tao Huang, Weili Yu, Mohamed ElKabbash*, and Chunlei Guo*, Gigantic suppression of recombination rate in 3D lead-halide perovskites for enhanced photodetector performance, Nature Photonics 17, 236-243 (2023).
  8. Shaun Lung, Jihua Zhang*, Kai Wang, and Andrey A. Sukhorukov, Real-time monitoring of polarization state deviations with dielectric metasurfaces, Advanced Photonics Nexus 2(2), 026003 (2023).
  9. Jihua Zhang*, Jinyong Ma, Dragomir N. Neshev, and Andrey A. Sukhorukov*, Photon pair generation from lithium niobate metasurface with tunable spatial entanglement [Invited], Chinese Optics Letters 21(1), 010005 (2023). (*Cover Article*)
  10. Jihua Zhang#, Jinyong Ma#, Matthew Parry, Marcus Cai, Rocio C. Morales, Lei Xu, Dragomir N. Neshev, and Andrey A. Sukhorukov*, Spatially entangled photon pairs from lithium niobate nonlocal metasurfaces, Science Advances 8(30), eabq4240 (2022).
  11. Mohamed ElKabbash*, Theodore Letsou, Sohail A. Jalil, Nathaniel Hoffman, Jihua Zhang, James Rutledge, Andrew R. Lininger, Chun-Hao Fann, Michael Hinczewski*, Giuseppe Strangi*, and Chunlei Guo*, “Fano-resonant ultrathin film optical coatings”, Nature Nanotechnology 16, 440-446 (2021).
  12. Yilun Wang, Yong Zhang, Zhibin Jiang, Wentao Deng, De Zhou, Xinyu Huang, Qizhi Yan, Jihua Zhang, Liao Chen, Yu Yu, Xiang Li*, Lei Ye*, and Xinliang Zhang*, Ultra-Compact High-Speed Polarization Division Multiplexing Optical Receiving Chip Enabled by Graphene-on-Plasmonic Slot Waveguide Photodetectors, Advanced Optical Materials 9(6), 2001215 (2021).
  13. Shaun Lung*, Kai Wang, Khosro Z. Kamali, Jihua Zhang, Mohsen Rahmani, Dragomir N. Neshev, and Andrey A. Sukhorukov*, Complex-birefringent dielectric metasurfaces for arbitrary polarization-pair transformations, ACS Photonics 7(11), 3015–3022 (2020).
  14. Jihua Zhang, Ran Wei, and Chunlei Guo*, Simultaneous implementation of antireflection and antitransmission through multipolar interference in plasmonic metasurfaces and applications in optical absorbers and broadband polarizers, Nanophotonics 9(15), 4529-4538 (2020).
  15. Subhash C. Singh, Mohamed ElKabbash, Zilong Li, Xiaohan Li, Bhabesh Regmi, Matthew Madsen, Sohail A. Jalil, Zhibing Zhan, Jihua Zhang, and Chunlei Guo*, Solar-trackable super-wicking black metal panel for photothermal water sanitation, Nature Sustainability 3, 938-946 (2020).
  16. Chaonan Yao, Yilun Wang, Jihua Zhang*, Xinliang Zhang, Chen Zhao, Bin Wang, Subhash C. Singh*, and Chunlei Guo*, Dielectric nanoaperture metasurfaces in silicon waveguides for efficient and broadband mode conversion with an ultrasmall footprint, Advanced Optical Materials 8(17), 2000529 (2020).
  17. Jihua Zhang, Ran Wei, Mohamed ElKabbash, E. Michael Campbell, and Chunlei Guo*, Thin-film perfect infrared absorbers over single- and dual-band atmospheric windows, Optics Letters 45(10), 2800-2803 (2020). (*Editor’s Pick*)
  18. Chun-Hao Fann#, Jihua Zhang#, Mohamed ElKabbash, William R. Donaldson, E. Michael Campbell, and Chunlei Guo*, Broadband infrared plasmonic metamaterial absorber with multipronged absorption mechanisms, Optics Express 27(20), 27917-27926 (2019).
  19. Jihua Zhang, Mohamed ElKabbash, Ran Wei, Subhash C. Singh, Billy Lam, and Chunlei Guo*, Plasmonic metasurfaces with 42.3% transmission efficiency in the visible, Light: Science & Applications 8, 53 (2019).
  20. Yizuo He#, Jihua Zhang#, Subhash C. Singh, Erik Garcell, Anatoliy Y. Vorobyev, Billy Lam, Zhibing Zhan, Jianjun Yang, and Chunlei Guo*, Maskless laser nano-lithography of glass through sequential activation of multi-threshold ablation, Applied Physics Letters 114(13), 133107 (2019).
  21. Chunqi Jin, Jihua Zhang*, and Chunlei Guo*, Metasurface integrated with double-helix point spread function and metalens for three-dimensional imaging, Nanophotonics 8(3), 451-458 (2019).
  22. Jihua Zhang, Yizuo He, Billy Lam, and Chunlei Guo*, Real-time in situ study of femtosecond-laser-induced periodic structures on metals by linear and nonlinear optics, Optics Express 25(17), 20323-20331 (2017).
  23. Jihua Zhang, Lei Shi, Yilun Wang, Eric Cassan*, and Xinliang Zhang*, On-chip high-speed optical detection based on an optical rectification scheme in silicon plasmonic platform, Optics Express 22(22), 27504-27514 (2014).
  24. Jihua Zhang, Eric Cassan*, and Xinliang Zhang*, Enhanced mid-to-near-infrared second harmonic generation in silicon plasmonic microring resonators with low pump power, Photonics Research 2(5), 143-149 (2014).
  25. Jihua Zhang, Eric Cassan*, and Xinliang Zhang*, Electrically controlled second-harmonic generation in silicon-compatible plasmonic slot waveguides: a new modulation scheme, Optics Letters 39(13), 4001-4004 (2014).
  26. Jihua Zhang, Eric Cassan, and Xinliang Zhang*, Wideband and Compact TE-Pass/TM-Stop Polarizer Based on a Hybrid Plasmonic Bragg Grating for Silicon Photonics, Journal of Lightwave Technology 32(7), 1383-1386 (2014).
  27. Jihua Zhang, Eric Cassan*, Dingshan Gao, and Xinliang Zhang*, Highly efficient phase-matched second harmonic generation using an asymmetric plasmonic slot waveguide configuration in hybrid polymer-silicon photonics, Optics Express 21(12), 14876-14887 (2013).
  28. Jihua Zhang, Eric Cassan*, and Xinliang Zhang, Efficient second harmonic generation from mid-infrared to near-infrared regions in silicon-organic hybrid plasmonic waveguides with small fabrication-error sensitivity and a large bandwidth, Optics Letters 38(12), 2089-2091 (2013).
  29. Jihua Zhang, Ping Zhao, Eric Cassan, and Xinliang Zhang*, Phase regeneration of phase-shift keying signals in highly nonlinear hybrid plasmonic waveguides, Optics Letters 38(6), 848-850 (2013).