False color map of inelastic neutron scattering...
Optical absorption spectrum of Cr2O3 nanopartic...
Writing the Magnetic Alphabet - FunsizePhysics
Magnon bands of Mn5Ge3 determined by inelastic ...
Capturing the exchange interaction between MTI ...
Magnon dispersion relation curves at various te...
Field-induced magnon instabilities in neutron-s...
Another Look at Photoelectron Spectra of the An...
Magnon Sensing of NO, NO2 and NH3 Gas Capture o...
Superconductivity at KTaO3 interface & magnon s...
Figure 6 from Neutron scattering study of two-m...
Cr3+‐Cr3+ Ion Pair Induced Fast Energy Migratio...
Solved 1. Cro42- Cr20-2- II. Na2O2 Mno . III. P...
SEM image of annealed Cr2O3 structure at 550 °C...
Figure 3 from Neutron scattering study of two-m...
Cr2O3 values (weight percent) plotted against i...
Figure 1 from Edinburgh Research Explorer From ...
Micro structure of Cr(NO3)3·9H2O and CrCl3·6H2O...
Figure 1 from Neutron scattering study of two-m...
The influence of the Cr2O3–Mn2O3 colorants syst...
Chromium Oxide Cr2O3 Nanopowder / Nanoparticles...
Electric field-induced resistance changes at lo...
Figure 1 from Structure and Magnetic Properties...
Magnon bandstructure in CrI3, a honeycomb 2D ma...
The neutron diffraction patterns of Cr 2 O 3 , ...
Morphology of the sample Cr2O3(30 nm)/Fe72Ga28(...
Gas sensing mechanism for Cr2O3-decorated ZnO m...
Growth of 2D Cr2O3–CrN Mosaic Heterostructures ...
The magnetism of the Cr2O3–CrN MHs. a) SQUID ch...
Magnon scattering in magnetic CrI3 bilayers a, ...
Magnon excitations in Cu2OSeO3 as measured by t...
CR5798 Cr2O3 40TiO2 Powder
An Ultralow Concentration of Cr2O3 Dopants‐Driv...