个人简介

方心远,研究员,博士生导师,国家优青(2024年)。光子芯片研究院助理院长(科研),上海市类脑光子芯片前沿科学研究基地副主任。本科、博士均毕业于南京大学(2009-2018)。目前以一作/通讯作者(含共同)发表论文30余篇,包含ScienceNature PhotonicsNature Nanotechnology等顶尖期刊。主持基金委优青/青年,上海面上项目。课题负责人身份参与上海市市级重大专项。入选上海市曙光学者(2023),上海市东方英才(青年项目)(2022),中国科协青年托举人才计划(2022),上海市青年科技启明星(2020),上海市晨光学者计划(2020)。获上海科技青年35人引领计划奖(2023)、中国光学学会科技创新奖郭光灿光学奖一等奖(2023)、中国仪器仪表学会“金国藩青年学子奖”(2023)、Journal of Optics青年领军人奖(Emerging Leader 2023 winner)、上海市青年五四奖章(2023)。


研究方向

1) 多维光场调控

2) 轨道角动量

3) 光学神经网络

4) 全息

 

一作/通讯(含共同)代表性论文

1) Three-dimensional direct lithography of stable perovskite nanocrystals in glass, Science 307, 375 (2022).

2) Orbital angular momentum holography for high-security encryption, Nature Photonics 14, 1022020.

3) Complex-amplitude metasurface-based orbital angular momentum holography in momentum space, Nature Nanotechnology 15, 9482020.

4) Nanophotonic manipulation of optical angular momentum for high-dimensional information optics, Advances in Optics and Photonics 13,772 (2021).

5)Orbital angular momentum-mediated machine learning for high-accuracy mode-feature encoding, Light: Science and Applications13, 49 (2024).  

6) High-dimensional orbital angular momentum multiplexing nonlinear holography, Advanced Photonics 3, 0150012021.

7) Harnessing disordered photonics via multi-task learning towards intelligent four-dimensional light field sensors, PhotoniX 4, 26 (2023).

8) Multi-dimensional multiplexing optical secret sharing framework with cascaded liquid crystal holograms, Opto-Electronic Advances 7, 230121 (2024).

9)Achromatic CMOS-Integrated Four-Bit Orbital Angular Momentum Mode Detector at Three Wavelengths, Nano Letters 24,8979 (2024).

10)Nanoprinted diffractive layer integrated vertical-cavity surface-emitting vortex lasers with scalable topological charge, Nano Letters 23,9096 (2023).

11)Engineered 3D Vortex Array with Customized Energy and Topological Charges for Multi-View Display, Laser & Photonics Reviews 23012582024.

12)Laser‐Induced Graphene Hologram Reconfiguration for Countersurveillance Multisecret Sharing, Laser & Photonics Reviews 17, 2200805 (2023).



联系方式

邮箱:xinyuan.fang@usst.edu.cn

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