鄢伟超的主页
名字:鄢伟超
学历:博士
职务:助理研究员
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个人简介
鄢伟超,男,哈工大博士毕业;斯威本科技大学联合培养博士;哈工大2018年博士研究生国家奖学金获得者;南昌大学空间科学与技术研究院助理研究员;人工智能实验班导师。 近年来先后在Opt. Express, Opt. Lett. APL Photonics等光学主流国际学术期刊发表SCI论文8篇;主持国家自然青年科学基金一项。 * Email: yanweichao@ncu.edu.cn
研究方向
(1) 全光机器学习-太赫兹光学衍射神经网络目标物体的识别与探测
(2) 矢量光场与涡旋光场的产生、传输和聚焦,特别是时空横向角动量传输,紧聚焦
(3) 超分辨成像与超分辨全光磁存储,特别是光学斯格明子,磁斯格明子产生、移动和湮灭的操控
(4) 人工智能与光场调控
(5) 人工智能与光学成像
研究项目
国家自然科学青年基金 “飞秒矢量光场调控实现超快超高密度全光磁存储的研究”(No: 12004155); 直接经费:24万元;起止日期:2021.1-2013.12. 本人主持。
研究成果
1. W. Yan, S. Lin, H. Lin, Y. Shun, Z. Nie, Baohua Jia and Xiaohua Deng. Song, “Dynamic control of magnetization spot arrays with three-dimensional orientations,” Opt. Express 29(2), 961-973 (2021) (SCI,中科院2区Top)
2. S Lin, Z Nie, W Yan, Y Liang, H Lin, Q Zhao and B Jia, “All-optical vectorial control of multistate magnetization through anisotropy-mediated spin-orbit coupling,” Nanophotonics 8 (12), 2177-2188(2019). (SCI, 中科院1 区)
3. W. Yan, Z. Nie, X. Liu, X. Zhang, Y. Wang and Y. Song, “Creation of isotropic super-resolved magnetization with steerable polarization orientation,” APL Photonics. 3(11), 116101(2018). (SCI,中科院2区)
4. W. Yan, Z. Nie, X. Liu, X. Zhang, Y. Wang and Y. Song, “Arbitrarily spin-orientated and super-resolved focal spot,” Optics Letters. 43(16), 32826-32829 (2018). (SCI,中科院2区Top)
5. W. Yan, Z. Nie, X. Zhang, Y. Wang and Y. Song, “Theoretical guideline for generation of an ultralong magnetization needle and a super-long conveyed spherical magnetization chain,” Optics Express. 25(19), 22268-22279 (2017). (SCI,中科院2区Top,)
6. W. Yan, Z. Nie, X. Liu, X. Zhang, Y. Wang and Y. Song, “Dynamic control of transverse magnetization spot arrays,” Optics Express. 26(13), 16824-16835 (2018). (SCI,中科院2区Top)
7. W. Yan, Z. Nie, X. Zhang, Y. Wang and Y. Song, “Generation of an ultralong pure longitudinal magnetization needle with high axial homogeneity using an azimuthally polarized beam modulated by pure multi-zone plate phase filter,” Journal of Optics. 19(8), 085401(2017). (SCI,中科院3区)
8. W. Yan, Z. Nie, X. Zhang, Y. Wang and Y. Song, “Magnetization shaping generated by tight focusing of azimuthally polarized vortex multi-Gaussian beam,” Applied Optics. 56(7), 1940–1946(2017). (SCI,中科院3区)
其他