Magnetic domain structure of magnetic shape memory alloy was observed using backscattered electron detector in scanning electron microscope and using Fresnel imaging in transmission electron microscope. The sample subjected to additional ion polishing allowed observation of the contrast associated with the magnetic structure of the material under conditions that exclude the use of Foucault or Fresnel transmission electron microscopy imaging. The additional research conducted using atomic force microscopy showed a significant relationship between the method of preparation and the magnetic shape memory alloy sample surface
The preparation of transmission electron microscope (TEM) thin foil specimens from metal alloys cont...
Studies of magnetic domain distributions in patterned magnetic materials are of pivotal importance i...
We present a study of the magnetic properties of arrays of nanostructures produced in a focussed ion...
Atomic probe microscopy techniques are developed to characterize magnetic and crystallographic domai...
The microstructure of a Co38Ni33Al29 ferromagnetic shape memory alloy was determined by conventional...
International audienceThis paper presents an investigation of magnetization configuration evolution ...
This paper presents an investigation of magnetization configuration evolution during in-situ magneti...
Magnetic imaging in the transmission electron microscope (TEM) has been used to examine submicron el...
Abstract—Domain imaging of soft magnetic materials by trans-mission electron microscopy (TEM) is dif...
The microstructure and coupling between structural and magnetic domains of ferromagnetic shape memor...
The magnetic shape memory alloy Ni-Mn-Ga is of great interest for its properties of large magneticfi...
Multi-scale electron microscopy technique that combines transmission electron microscopy (TEM) and f...
The preparation of transmission electron microscope (TEM) thin foil specimens from metal alloys cont...
The type-I magnetic contrast in a scanning electron microscope is used to study the domain behaviour...
We present a study of the magnetic properties of arrays of nanostructures produced in a focussed ion...
The preparation of transmission electron microscope (TEM) thin foil specimens from metal alloys cont...
Studies of magnetic domain distributions in patterned magnetic materials are of pivotal importance i...
We present a study of the magnetic properties of arrays of nanostructures produced in a focussed ion...
Atomic probe microscopy techniques are developed to characterize magnetic and crystallographic domai...
The microstructure of a Co38Ni33Al29 ferromagnetic shape memory alloy was determined by conventional...
International audienceThis paper presents an investigation of magnetization configuration evolution ...
This paper presents an investigation of magnetization configuration evolution during in-situ magneti...
Magnetic imaging in the transmission electron microscope (TEM) has been used to examine submicron el...
Abstract—Domain imaging of soft magnetic materials by trans-mission electron microscopy (TEM) is dif...
The microstructure and coupling between structural and magnetic domains of ferromagnetic shape memor...
The magnetic shape memory alloy Ni-Mn-Ga is of great interest for its properties of large magneticfi...
Multi-scale electron microscopy technique that combines transmission electron microscopy (TEM) and f...
The preparation of transmission electron microscope (TEM) thin foil specimens from metal alloys cont...
The type-I magnetic contrast in a scanning electron microscope is used to study the domain behaviour...
We present a study of the magnetic properties of arrays of nanostructures produced in a focussed ion...
The preparation of transmission electron microscope (TEM) thin foil specimens from metal alloys cont...
Studies of magnetic domain distributions in patterned magnetic materials are of pivotal importance i...
We present a study of the magnetic properties of arrays of nanostructures produced in a focussed ion...