All Stories

  1. QDMlab: A MATLAB toolbox for analyzing quantum diamond microscope ...
  2. Machine Learning models for Moment Magnetometry applied to High-Resolution Magnetic Maps
  3. The Fine‐Scale Magnetic History of the Allende Meteorite: Implications for the Structure of the Solar Nebula
  4. The importance of temperature-dependent diffraction data in understanding magnetic changes across the pyrrhotite λ-transition.
  5. Paleointensity and Rock Magnetism of Martian Nakhlite Meteorite Miller Range 03346: Evidence for Intense Small‐Scale Crustal Magnetization on Mars
  6. High‐Sensitivity Moment Magnetometry With the Quantum Diamond Microscope
  7. Simulation of Natural Iron Oxide Alteration in Soil: Conversion of Synthetic Ferrihydrite to Hematite Without Artificial Dopants, Observed With Magnetic Methods
  8. Magnetoelastic properties and behaviour of 4C pyrrhotite, Fe7S8, through the Besnus transition
  9. Under pressure: How pressure affects magnetic remanence
  10. AF Demagnetization and ARM Acquisition at Elevated Temperatures in Natural Titanomagnetite Bearing Rocks
  11. Domain State and Temperature Dependence of Pressure Remanent Magnetization in Synthetic Magnetite: Implications for Crustal Remagnetization
  12. What causes pyrrhotite's magnetic properties to change at low temperatures?
  13. Influence of Jahn-Teller active Mn3+ ions on electrical and dielectric properties, thermopower and Mössbauer spectra of rutile-type Fe1-xMnxNbTiO6 (0 ≤ x ≤ 0.9)
  14. Magnetic and structural data used to monitor the alloying process of mechanically alloyed Fe80Ni20
  15. Magnetic Properties of the Iron–Nickel System: Pressure, Composition, and Grain Size
  16. Low-temperature electrical and dielectric properties and Mössbauer spectra of rutile-type FeNbTiO 6 , prepared in oxidizing and reducing conditions
  17. Monitoring the alloying process of mechanically synthesized Fe 80 Ni 20 through changes in magnetic properties
  18. Effect of oxygen partial pressure during preparation of rutile-type FeNbTiO6 on electrical and dielectric properties, thermopower and Mössbauer spectra
  19. How the Magnetic Properties change when Pyrrhotite is cooled through its 30 K Phase Transition
  20. Is it possible to infer the magnetic field strength of the early solar system from meteorites?
  21. Anatomy of a pressure-induced, ferromagnetic-to-paramagnetic transition in pyrrhotite: Implications for the formation pressure of diamonds