陆轻铀(email:qxl@ustc.edu.cn),美国 University of Texas at Austin 大学物理学学士(1994年,with High Honors)与凝聚态物理博士(2000年,with University Fellowship)。2000-2005年任美国Cypress半导体公司技术主管,并作为项目负责人(Project Leader)研制成功国际首个72兆比特QDR-SRAM产品,持美国 O-1 杰出人才签证。2005年起任中国科学技术大学微尺度国家实验室研究员、博导;2008年起兼任中科院强磁场科学中心研究员(双聘)。从事各种极端与恶劣条件扫描探针显微镜的自主研制,及其在关联电子材料、低维材料、磁性纳米材料、活性溶液生物分子成像等多学科应用研究。主持研制成功国际首个水冷磁体扫描隧道显微镜(STM),并在创纪录的27T强磁场下得到原子图像。主持研制成功国家稳态强磁场实验装置大科学工程一级课题“20T强磁场STM-MFM-AFM组合显微镜”。主持研制成功中科院重大装备研制项目“40fA全低压高稳低温极高场UHV-STM”。获 30 余项国家发明专利授权,其中一项已产业化,成立了“合肥中科微力科技有限公司”。以第一或通讯作者发表论文于:Science,Nature Materials,Nature Communications,Advanced Materials,Advanced Functional Materials,Nano Letters,Nano Research,eLife,Oncotarget,Nanoscale,Carbon 等高影响刊物。在国际第一本皮米科学专著:Fundamentals of Picoscience(Taylor & Francis 2013年出版)中应邀撰写一章:Ultrafast Atomic Resolution STM。2005年入选教育部新世纪优秀人才;2015年入选南京321领军科技创业人才;2018年获得中国科学院杰出科技成就奖。2016年担任国家重大科研仪器研制项目总工(项目名称:太赫兹近场高通量材料物性测试系统,总金额7350万元);2017年担任国家重点研发计划(原973计划)首席科学家(项目名称:基于加速器光源的高通量物性与结构原位表征,总金额2583万元)。2018年起任国际著名仪器刊物 Review of Scientific Instruments副主编。获得2019年安徽省科技奖特等奖。2020年享受安徽省政府津贴。
1) Observation of magnetic domain behavior in colossal magneto-resistive materials with a magnetic force microscope - Science - 1997 - Vol.276 p.2006
2) Ferroelectrically tunable magnetic skyrmions in
ultrathin oxide heterostructures - Nature Materials - 2018年 - 2018年17卷1087–1094页
3) Moiré engineering of electronic phenomena in
correlated oxides - Nature Physics - 2020 - 2020年16卷631–635页
4) Evolution and control of the phase competition
morphology in a manganite film - Nature Communications - 2015 - Vol.6 p.8980
5) Induced Formation of Structural Domain Walls
and Their Confinement on Phase Dynamics
in Strained Manganite Thin Films - Advanced Materials - 2018 - 2018年30卷1805353页
6) An Artificial Skyrmion Platform with Robust Tunability in Synthetic Antiferromagnetic Multilayers - Advanced Functional Materials - 2019 - 2019年1907140页
7) Flatbands and Emergent Ferromagnetic Ordering in Fe3Sn2 Kagome Lattices - Physical Review Letters - 2018 - 2018年121卷096401页
8) Controllable Thickness Inhomogeneity and Berry Curvature Engineering of Anomalous Hall Effect in SrRuO3 Ultrathin Films - Nano Letters - 2020 - 2020年20卷2468-2477页
9) Quantum Percolation and Magnetic Nanodroplet States in Electronically Phase-Separated Manganite Nanowires - Nano Letters - 2017 - 17, 1461
10) 27 T ultra-high static magnetic field
changes orientation and morphology of
mitotic spindles in human cells - eLife - 2017 - 6:e2291
11) Atomic resolution scanning tunneling microscope
imaging up to 27 T in a water-cooled magnet - Nano Research - 2015 - Vol.8 p.3898
12) Sub-molecular features of single proteins in solution resolved with scanning tunneling microscopy. - Nano Research - - 1998-0124
13) Scanning tunneling microscopy evidences for
surface electron scattering by underlying atoms - Carbon - 2015 - Vol.84 p.74
14) A Compact High Field Magnetic Force Microscope - ULTRAMICROSCOPY - - 0304-3991
15) Moderate and strong static magnetic fields directly affect EGFR kinase domain orientation to inhibit cancer cell proliferation - Oncotarget - - 1949-2553
16) Using L-STM to directly visualize enzymatic self-assembly/disassembly of nanofibers - Nanoscale - 2016 - 8, 15142-15146
17) Fast Amplitude Modulation Detector for Scanning
Force Microscopy with High Q Factor - Microscopy and Microanalysis - 2012 - 2012 Vol.18 pp.1016
18) Atomic resolution ultrafast scanning tunneling microscope with scan rate breaking the resonant frequency of a quartz tuning fork resonator - Review of Scientific Instruments - 2011.5 - Vol.82 p.053705
19) Sub-molecular features of single proteins in solution resolved with scanning tunneling microscopy - Nano Research - 2016年 - 9(9), 2551-2560
20) Self-manifestation and universal correction of image distortion in scanning tunneling microscopy with spiral scan - Review of Scientific Instruments - 2010-7 - Vol.81
21) Induced Formation of Structural Domain Walls and Their Confinement on Phase Dynamics in Strained Manganite Thin Films - ADVANCED MATERIALS - -
22) Localized measurement of penetration depth for high TC superconductor single crystals using a magnetic force microscope - Physica C - 2002 - Vol.371
23) Strain driven charge-ordered state in La0.67Ca0.33MnO3 - Phys. Rev. B - 2001 - Vol.63
24) A compacthigh field magneticforcemicroscope - Ultramicroscopy - 2014 - Vol.147 pp.133
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