扫描NV探针显微镜(Scanning NV Probe Microscope,SNVM)是一款结合了金刚石氮-空位色心(Nitrogen-Vacancy, NV)光探测磁共振(Optically Detected Magnetic Resonance, ODMR)技术和原子力显微镜(Atomic Force Microscope,AFM)扫描成像技术的量子精密测量仪器,可用于自旋电子学、多铁性材料、二维磁性材料、超导材料等材料的研究。



扫描NV探针显微镜(Scanning NV Probe Microscope,SNVM)是一款结合了金刚石氮-空位色心(Nitrogen-Vacancy, NV)光探测磁共振(Optically Detected Magnetic Resonance, ODMR)技术和原子力显微镜(Atomic Force Microscope,AFM)扫描成像技术的量子精密测量仪器,可用于自旋电子学、多铁性材料、二维磁性材料、超导材料等材料的研究。
1 T/0.1 T/0.1 T,9 T/0.1 T/0.1 T, 9 T/1 T/1 T
干式:1/0.1/0.1 T、9/1/1 T
湿式:1/1/1 T、6/1/1 T、6/2/2 T




YBCO @60 K, 5 G

YBCO @60 K, 5 G

YBCO @60 K, 10 G

CoFeB @4.2 K

TMD(2D magnetic materials)

Pt/Co/Ag @300 K

CoFeB @2 K

MAFO @300 K

TmIG @300 K

LSMO @300 K

YIG @300 K

TmFeO3 @300 K

micromagnet @300 K

CoFeB @300 K

BFO @300 K

MoS2 @2 K, 2 T

FeSi @4.2 K

Optical grating @300 K
Jiang, C. et al. Signatures of magnetism in zigzag graphene nanoribbons embedded in a hexagonal boron nitride lattice. Nat. Mater. (2025) doi:10.1038/s41563-025-02317-4.
Zhao, Y. et al. Experimental Evidence of Room-Temperature Ferromagnetism in Semiconducting MnS2. J. Am. Chem. Soc. 140, 36, 11519–11525 (2025).
Zhu, Z. et al. Regulating the Magnetic Domain of Nickle for Enhanced CO2 Electrochemical Reduction Driven by External Magnetic Field. Adv. Energy Mater. 15, 2403624 (2025).


