scanning nv magnetometer
scanning nv magnetometer
scanning nv magnetometer

Scanning NV Microscope (SNVM)

Nanomagnetic Imaging Microscope

 

The CIQTEK Scanning Nitrogen-vacancy Microscope (SNVM) is an advanced scientific analytical instrument that combines optically detected magnetic resonance (ODMR) of diamond nitrogen-vacancy centers with the scanning probe technique. This combination can be applied to the research of spintronics, multiferroic, 2D magnetic material, superconductors, etc.

 

* There are two versions: the ambient version and the cryogenic version.

Key Components

 

snvm-Probe Design

Probe Design

•  Small and compact

•  High strength

•  Load capacity

•  Strong earthquake resistance

 

snvm-Optical Design

Optical Design

•  Simple to use

•  Easy to expand

•  High fluorescence collection efficiency

•  Wide field of view


▶ Scanning NV Probe

 

•  Scanning NV probe with arrays of nanopillars or with a single pillar

•  Count rates: ≥300 kc/s

•  Contrast: ≥20%

  • snvm-NV Probe
  • snvm-NV Probe
  • snvm-NV Probe
  • snvm-NV Probe
  • snvm-NV Probe
  • snvm-NV Probe

Physical depiction, SEM image, fluorescence image, and property characterization image of NV probes

Superconductor

Scanning NV Microscope applications in Superconductor

 

Ferromagnet & Antiferromagnetic

Scanning NV Microscope applications in Ferromagnet & Antiferromagnetic
Scanning NV Microscope applications in Ferromagnet & Antiferromagnetic
Scanning NV Microscope applications in Ferromagnet & Antiferromagnetic
Scanning NV Microscope applications in Ferromagnet & Antiferromagnetic

 

▶ CFM Mode, MFM Mode, AFM Mode

  • Scanning NV Microscope applications - CFM mode
  • Scanning NV Microscope applications - MFM mode
  • Scanning NV Microscope applications - AFM mode

Options: Cryogenic High-Pressure Optically Detected Magnetic Resonance (ODMR)

 

snvm-Probe Design
Scan Range 300 μm * 300 μm
Pressure ≥ 30 GPa
Magnetic Sensitivity ≤ 35 μT/√Hz
Spatial Resolution 500 nm
Magnetic Field 9/1/1 T
Refrigeration Method Cryogenic 1.5 W@4 K
Temperature Range 2 K to 300 K
Temperature Resolution ± 50 mK 

 

Results under 30 GPa:

  • SNVM Confocal Scan
    Confocal Scan
  • SNVM ODMR Spectrum
    ODMR Spectrum

 

Users Research
Tsinghua University Skyrmions, Topological Insulators
City University of Hong Kong Materials, Applied Physics
Peking University Biomagnetism
Institute of Physics CAS Superconductor, Spin Magnetism
University of Science and Technology of China Scanning NV Magnetometry
South China University of Technology Magnetic Materials, Oxide thin films
Fudan University SPM, Nano-magnetism, Magnetic structure
Beihang University Spintronics, Nonvolatile Memory
Hebei University of Technology Magnetic Materials Applied in Electricity
Sun Yat-sen University Superconductor, Topological Material
Harbin Institute of Technology Micromagnetic Structure
Xiamen University Nano-optics, Raman Spectrum
Hubei Normal University Public Laboratory Facility
Key Parameters SNVM (Room Temperature Version) SNVM (Cryogenic Version)
Magnetic Sensitivity ≤ 2 μT/Hz1/2 ≤ 5 μT/Hz1/2
Spatial Resolution 10 to 30 nm
Operating Temperature 300 K 2K to 300 K
Featured Functions ISO-B Mode, Dual-B Mode, Full-B Mode, Quenching Mode, AFM Mode, MFM Mode, CFM Mode
Magnet Options 0 to 50 mT 9/1/1 T

 

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