Measuring Iron Oxide Composites with a Custom-Made Scanning Magnetic Microscope
Christian D. Medina, Leonardo A. F. Mendoza, Cleânio Luz-Lima, Antonio C. Bruno, Jefferson F. D. F. Araujo

TL;DR
Researchers built a custom scanning magnetic microscope to measure iron oxide composites with high sensitivity and precision.
Contribution
The novel contribution is the enhanced scanning magnetic microscope with improved sensitivity and a new detection system.
Findings
The microscope achieved a sensitivity of about 850 nTrms√Hz.
Magnetization curves of iron oxide composites were successfully measured and compared with powder samples.
Abstract
We improved a scanning magnetic microscope built previously by adding a new detection system and the capability of mapping samples applying magnetic fields from −500 mT to +500 mT. The mechanical structure was also enhanced to decrease vibrations of the system in the earth’s magnetic field. The microscope is based on a differential arrangement of two Hall effect elements. The overall system presented a sensitivity of about 850 nTrms√Hz, and it was calibrated using a 99% pure nickel sphere. The system achieved a magnetic moment sensitivity of the order of 10 nAm2. All equipment used for operating the magnetic microscope was controlled by using the LabVIEW® platform. We also fabricated samples with controlled properties using iron oxide microparticles and epoxy resin with various densities. We obtained the magnetization curves of the composites using the assembled microscope and compared…
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Taxonomy
TopicsCharacterization and Applications of Magnetic Nanoparticles · Geophysical and Geoelectrical Methods · Magnetic Field Sensors Techniques
