Item | Name | Title | Author | Publisher | Date |
1 | Qiming Zhang | Continuous-w**e near-infrared stimulated-emission depletion microscopy using downshifting lanthanide nanoparticles | Liangliang Liang, Ziwei Feng, Qiming Zhang, Thang Do Cong, Yu Wang, Xian Qin, Zhigao Yi, Melgious Jin Yan Ang, Lei Zhou, Han Feng, Bengang Xing, Min Gu*, Xiangping Li*, Xiaogang Liu* | Nature Nanotechnology | 2021.6 |
2 | Haitao Luan | 人工智能纳米光子学:光学神经网络与纳米光子学 | 栾海涛,陈希,张启明,蔚浩义,顾敏* | 光学学报 | 2021.4 |
3 | Min Gu | Ground-State Depletion Nanoscopy of Nitrogen-Vacancy Centres in Nanodiamonds | J Storterboom, M Barbiero, S Castelletto, M Gu* | Nanoscale Research Letters | 2021.3 |
4 | Haitao Luan | 768-ary Laguerre-Gaussian-mode shift keying free-space optical communication based on convolutional neural networks | H Luan, D Lin, K Li, W Meng, M Gu*, X Fang* | Optics Express | 2021.6 |
5 | Min Gu | 4D Ultra‐High‐Density Long Data Storage Supported by a Solid‐State Optically Active Polymeric Material with High Thermal Stability | Le Gao, Qiming Zhang, Richard A Evans, Min Gu* | Advanced Optical Materials | 2021.4 |
6 | Min Gu | Self-organized phase-transition lithography for all-inorganic photonic textures | Bo Zhang, Dezhi Tan*, Zhuo Wang, Xiaofeng Liu, Beibei Xu, Min Gu, Limin Tong, Jianrong Qiu* | Light: Science & Applications | 2021.4 |
7 | Min Gu | Extreme‐Angle Silicon Infrared Optics Enabled by Streamlined Surfaces | Fei Zhang, Mingbo Pu, Xiong Li, Xiaoliang Ma, Yinghui Guo, Ping Gao, Honglin Yu, Min Gu, Xiangang Luo* | Advanced Materials | 2021.3 |
8 | Min Gu | Plasmon-driven nanowire actuators for on-chip manipulation | Shuangyi Linghu, Zhaoqi Gu, Jinsheng Lu, Wei Fang, Zongyin Yang, Huakang Yu, Zhiyuan Li, Runlin Zhu, Jian Peng, Qiwen Zhan, Songlin Zhuang, Min Gu, Fuxing Gu* | Nature communications | 2021.1 |
9 | Jian Lin | High-quality longitudinally polarized photonic nanojet created by a microdisk | Zhang Cheng, Lin Jian*, Gu Min | Optics Letters | 2021.7 |
10 | Yibo Dong | High responsivity Graphene-InGaAs near-infrared photodetector realized by hole trapping and its response saturation mechanism | Liangchen Hu,# Yibo Dong,#, Jun Deng*, Yiyang Xie*, XiaoChen Ma, Fengsong Qian, Qiuhua Wang, Pan Fu, Chen Xu* | Optical Express | 2021.7 |
11 | Zhengfen Wan | Laser scribed graphene for supercapacitors | Zhengfen Wan, Xi Chen, Min Gu*, | Opto-Electronic Advances | 2021.7 |
12 | Haoyi Wei | Neuron-inspired low-density Steiner tree networks for three-dimensional metastructures | Haoyi Yu, Qiming Zhang, Benjamin P. Cumming, Elena Goi, Jared H. Cole, Haitao Luan, Xi Chen, Min Gu* | Advanced Science | 2021.6 |
13 | Yangyundou Wang | Yangyundou Wang,Jian Lin,Qiming Zhang,Xi Chen,Haitao Luan,Min Gu* | Engineering | 2021.5.3 | |
14 | Yinan Zhang | Fabry-Perot C**ity Enhanced Three-photon Luminescence of Platinum Diselenide Atomic Layers | Jing Han, Yingwei Wang, Jun He, Hua Lu, Xiangping Li, Min Gu and Yinan Zhang* | Nanoscale | 2021.4 |
15 | Yinan Zhang | Photonics empowered passive daytime radiative cooling | Yinan Zhang*, Xi Chen, Boyuan Cai, Haitao Luan, Qiming Zhang, Min Gu* | Advanced Photonics Research | 2021.2 |
16 | Simone Lamon | Nanoscale optical writing through upconversion resonance energy transfer | Simone Lamon, Yiming Wu, Qiming Zhang, Xiaogang Liu, Min Gu* | Science Advances | 2021.2 |
17 | Elena Goi | Nanoprinted high-neuron-density optical linear perceptrons performing near-infrared inference on a CMOS chip | Elena Goi, Xi Chen, Qiming Zhang, Benjamin P Cumming, Steffen Schoenhardt, Haitao Luan, Min Gu* | Light: Science & Applications | 2021.3 |
18 | Yinan Zhang | Extremely Polarized and Efficient Hot Electron Intraband Luminescence from Aluminum Nanostructures for Nonlinear Optical Encoding | Yinan Zhang*, Jing Han, Liu Shi, Shiren Chen, Ziwei Feng, Hua Lu, Min Gu*, Xiangping Li* | Laser & Photonics Reviews | 2020.11 |
19 | Yinan Zhang | Magnetic plasmon resonances in nanostructured topological insulators for strongly enhanced light–MoS 2 interactions | Hua Lu*, Zengji Yue, Yangwu Li, Yinan Zhang*, Mingwen Zhang, Wei Zeng, Xuetao Gan, Dong Mao, Fajun Xiao, Ting Mei, Weiyao Zhao, Xiaolin Wang, Min Gu, Jianlin Zhao* | Light: Science & Applications | 2020.11 |
20 | Xinyuan Fang | Orbital angular momentum holography for high-security encryption | Xinyuan Fang#, Haoran Ren#, and Min Gu* | Nature Photonics | 2020.2 |
21 | Xinyuan Fang | Complex-amplitude metasurface-based orbital angular momentum holography in momentum space | Haoran Ren#,*, Xinyuan Fang#, Jaehyuck Jang#, Johannes Bürger, Junsuk Rho* and Stefan A. Maier* | Nature Nanotechnology | 2020.11 |
22 | Xinyuan Fang | Multichannel nonlinear holography in a two-dimensional nonlinear photonic crystal | Xinyuan Fang, Huijun Wang, Haocheng Yang, Zhilin Ye, Yongmei Wang, Yong Zhang* , Xiaopeng Hu*, Shining Zhu, and Min Xiao*, | Physical Review A | 2020.10 |
23 | High-dimensional orbital angular momentum multiplexing nonlinear holography | Xinyuan Fang , Haocheng Yang, Wenzhe Yao , Tianxin Wang, Yong Zhang *, Min Gu and Min Xiao | Advanced Photonics | 2021.01 | |
24 | Xi Chen | Perspective of fibre‐optical microendoscopy with microlenses | Baokai Wang, Qiming Zhang, Xi Chen, Haitao Luan, Min Gu* | Journal of Microscopy | 2020 |
25 | Min Gu | Multi-focal laser fabrication of nitrogen vacancy centres in a bulk diamond | Martina Barbiero, Stefania Castelletto, Min Gu* | OSA Continuum | 2020 |
26 | Min Gu | Aspherical micro-lenses enabled by two-photon direct laser writing for fiber-optical microendoscopy | Baokai Wang, Qiming Zhang, Min Gu* | Optical Material Express | 2020 |
27 | Min Gu | Three-dimensional direct laser writing of PEGda hydrogel microstructures with low threshold power via a green laser beam | Haoyi Yu, , Qiming Zhang, Zhongze Gu, Min Gu* | Light: Advanced Manufacturing | 2020 |
28 | Min Gu | Imaging with nanometer resolution using optically active defects in silicon carbide | Stefania Castelletto*, Martina Barbiero, Mirren Charnley, Min Gu | Physical Review Applied | 2020 |
29 | Min Gu | Direct determination of aberrated pupil functions by an artificial neural network | Ben Cumming*, Min Gu | Optics Express | 2020 |
30 | Min Gu | Nanoscale magnetic imaging enabled by nitrogen vacancy centres in nanodiamonds labelled by iron-oxide nanoparticles | Martina Barbiero, Stefania Castelletto, Qiming Zhang, Mirren Charnely, Sarah Russel, Min Gu* | Nanoscale | 2020 |
31 | Min Gu | Three-dimensional vectorial holography based on machine-learning inverse design | Haoran Ren, Wei Shao, Flora Salim, Min Gu* | Science Advances | 2020.4 |
32 | Min Gu | Controlled microstructural architectures based on smart fabrication strategies | Haibo Ding, Qiming Zhang, Hongcheng Gu, Xiaojiang Liu, Litao Sun, Min Gu*,Zhongze Gu* | Advanced Functional Materials | 2020.1 |
33 | Elena Goi | Elena Goi ,Qiming Zhang, Xi Chen, Haitao Luan, Min Gu* | PhotoniX | 2020.3 | |
34 | Wei Xin | Inverse design of optical needles with central zero-intensity points by artificial neural networks | Wei Xin, Qiming Zhang*, Min Gu* | Optics Express | 2020 |
35 | Qiming Zhang | Artificial neural networks enabled by nanophotonics | Zhang, Q., Yu, H., Barbiero, M., Wang, B., & Gu, M* | Light: Science and Applications | 2019.5 |
36 | Min Gu | Super-resolution optical microscope: principle, instrumentation, and application | Wang, B. kai, Barbiero, M., Zhang, Q. ming, & Gu, M* | Frontiers of Information Technology and Electronic Engineering | 2019.5 |
37 | Min Gu | Millisecond-Timescale, High-Efficiency Modulation of Upconversion Luminescence by Photochemically Derived Graphene | Lamon, S., Wu, Y., Zhang, Q., Liu, X., & Gu, M* | Advanced Optical Materials | 2019.10 |
38 | Min Gu | Optically Digitalized Holography: A Perspective for All-Optical Machine Learning | Gu, M*., Fang, X., Ren, H., & Goi, E | Engineering | 2019.6 |
39 | Min Gu | Optomagnetic plasmonic nanocircuits | Al-Baiaty, Z., Cumming, B. P., Gan, X., & Gu, M* | 2019.8 | |
40 | Min Gu | Large-scale waterproof and stretchable textile-integrated laser-printed graphene energy storages | Litty V Thekkekara, Min Gu* | Scientific reports | 2019.8 |
41 | Min Gu | Direct detection of photon spin angular momentum by a chiral graphene mid-infrared photodetector | Jingyang Peng, Benjamin P Cumming, Min Gu* | Optics letters | 2019.6 |
42 | Steffen Schoenhardt | Ridge resonators: impact of excitation beam and resonator losses | Steffen Schoenhardt, Andreas Boes, Thach G. Nguyen, and Arnan Mitchell | Optics Express | 2021.08 |
43 | Yibo Dong | Graphene-assisted preparation of large-scale single-crystal Ag(111) nanoparticle arrays for surface-enhanced Raman scattering | Yibo Dong, Yiyang Xie*, Liangchen Hu, Chen Xu*, Weiling Guo, Guanzhong Pan, Qiuhua Wang, Fengsong Qian, Jie Sun* | Nanotechnology | 2020.10 |
44 | Min Gu | Enhancing monolayer photoluminescence on optical micro/nanofibers for low-threshold lasing | Feng Liao, Jiaxin Yu, Zhaoqi Gu, Zongyin Yang, Tawfique Hasan, Shuangyi Linghu, Jian Peng, Wei Fang, Songlin Zhuang, Min Gu, Fuxing Gu* | Science advances | 2019.11 |
45 | Min Gu | Terahertz spectroscopy in biomedical field: A review on signal-to-noise ratio improvement | Yan Peng, Chenjun Shi, Yiming Zhu*, Min Gu, Songlin Zhuang | PhotoniX | 2020.4 |
46 | Min Gu | Polarization-insensitive metalens with extended focal depth and longitudinal high- tolerance imaging | Xiaofei Zang, Weiwei Xu, Min Gu, Bingshuang Yao, Lin Chen, Yan Peng, Jingya Xie, Alexey. V. Balakin, Alexander. P. Shkurinov, Yiming Zhu*, Songlin Zhuang | Adv. Opt. Materials | 2019.11 |
47 | Min Gu | Terahertz spatial sampling with subw**elength accuracy | Yan Peng, Yiming Zhu*, Min Gu & Songlin Zhuang | Light: Science & Applications | 2019.8 |
48 | Min Gu | Synthetic helical dichroism for six-dimensional optical orbital angular momentum multiplexing | Xu Ouyang, Yi Xu, Mincong Xian, Ziwei Feng, Linwei Zhu, Yaoyu Cao, Sheng Lan, Bai-Ou Guan, Cheng-Wei Qiu, Min Gu*,xiangpingLi* | Nature Photonics | 2021.10 |
49 | Min Gu | Multidimensional phase singularities in nanophotonics | Ni, JinchengHuang, CanZhou, Lei-MingGu, MinSong, QinghaiKivshar, YuriQiu, Cheng-Wei | Science | 2021.10 |
50 | Simone Lamone | Nanophotonics-enabled optical data storage in the age of machine learning | Simone Lamon, Qiming Zhang, Min Gu* | Science Advances | 2021.11 |