Mechanical control of electrical properties in complex heterostructures, consisting of magnetic FeOx nanoparticles on top of manganite films, is achieved using atomic force microscope AFM based methods. Under applied pressure of the AFM tip, drop of the electrical conductivity is observed inducing an electrically insulating state upon a critical normal load. Current and surface potential maps suggest that the switching process is mainly governed by the flexoelectric field induced at the sample surface. The relaxation process of the electrical surface potential indicates that the diffusion of oxygen vacancies from the bulk of the manganite films towards the sample surface is the dominant relaxation mechanism. The magnetic FeOx nanoparticle...
Atomic force microscopy (AFM) based techniques have been used widely to study functional properties ...
The resistive switching effect in transition metal oxides allows for a dedicated manipulation of the...
Direct measurements of the linear ac susceptibility and magnetic relaxation of a few Mn monolayers d...
Mechanical control of electrical properties in complex heterostructures, consisting of magnetic FeOx...
Interface-dominated materials such as nanocrystalline thin films have emerged as an enthralling clas...
Perowskitische Manganoxide sind hochkorrelierte Systeme, die neben einem thermisch induzierten Metal...
Magnetic nanoparticles (MNPs) are instrumental for fabrication of tailored nanomagnetic structures, ...
This thesis presents studies on engineering the electrical and magnetic properties in oxide thin fil...
The perspective of energy-efficient and tunable functional magnetic nanostructures has triggered res...
Strongly correlated perovskite oxides are a class of materials with fascinating intrinsic physical f...
Located beyond the resolution limit of nanoindentation, contact resonance atomic force microscopy (C...
Electric-field control of magnetism has remained a major challenge which would greatly impact data s...
Repeatable magnetization reversal under purely electrical control remains the outstanding goal in ma...
We report on the fabrication and magnetotransport characterization of hybrid graphene-based nanodevi...
The coupling between the magnetic and electric dipoles in multiferroic and magnetoelectric materials...
Atomic force microscopy (AFM) based techniques have been used widely to study functional properties ...
The resistive switching effect in transition metal oxides allows for a dedicated manipulation of the...
Direct measurements of the linear ac susceptibility and magnetic relaxation of a few Mn monolayers d...
Mechanical control of electrical properties in complex heterostructures, consisting of magnetic FeOx...
Interface-dominated materials such as nanocrystalline thin films have emerged as an enthralling clas...
Perowskitische Manganoxide sind hochkorrelierte Systeme, die neben einem thermisch induzierten Metal...
Magnetic nanoparticles (MNPs) are instrumental for fabrication of tailored nanomagnetic structures, ...
This thesis presents studies on engineering the electrical and magnetic properties in oxide thin fil...
The perspective of energy-efficient and tunable functional magnetic nanostructures has triggered res...
Strongly correlated perovskite oxides are a class of materials with fascinating intrinsic physical f...
Located beyond the resolution limit of nanoindentation, contact resonance atomic force microscopy (C...
Electric-field control of magnetism has remained a major challenge which would greatly impact data s...
Repeatable magnetization reversal under purely electrical control remains the outstanding goal in ma...
We report on the fabrication and magnetotransport characterization of hybrid graphene-based nanodevi...
The coupling between the magnetic and electric dipoles in multiferroic and magnetoelectric materials...
Atomic force microscopy (AFM) based techniques have been used widely to study functional properties ...
The resistive switching effect in transition metal oxides allows for a dedicated manipulation of the...
Direct measurements of the linear ac susceptibility and magnetic relaxation of a few Mn monolayers d...