We demonstrate a direct correlation between the domain structure of multiferroic BiFeO3 thin films and exchange bias of Co0.9Fe0.1/BiFeO3 heterostructures. Two distinct types of interactions − an enhancement of the coercive field (exchange enhancement) and an enhancement of the coercive field combined with large shifts of the hysteresis loop (exchange bias) − have been observed in these heterostructures, which depend directly on the type and crystallography of the nanoscale (2 nm) domain walls in the BiFeO3 film. We show that the magnitude of the exchange bias interaction scales with the length of 109° ferroelectric domain walls in the BiFeO3 thin films which have been probed via piezoresponse force microscopy and X-ray magnetic circular di...
This dissertation details the study of electric and strain control of antiferromagnetism and ferroma...
When a ferromagnet/antiferromagnet (FM/AF) bilayer is cooled below the Neel temperature TN& lt;/...
Exchange bias coupling at the multiferroic- ferromagnetic interface in BiFeO3/La0.7Sr0.3MnO3 heteros...
We demonstrate a direct correlation between the domain structure of multiferroic BiFeO3 thin films a...
We have combined neutron scattering and piezoresponse force microscopy to show that the exchange fie...
There is growing evidence that domain walls in ferroics can possess emergent properties that are abs...
Magnetoelectric coupling in ferromagnetic/multiferroic systems is often manifested in the exchange b...
There is growing evidence that domain walls in ferroics can possess emergent properties that are abs...
A wealth of fascinating phenomena have been discovered at the BiFeO3 domain walls, examples such as ...
Sterwerf C, Meinert M, Arenholz E, Schmalhorst J-M, Reiss G. Room Temperature Exchange Bias in BiFeO...
This dissertation focuses on the thorough characterization of nanoscale interface regions - so-calle...
BiFeO3 (BFO) is the only room temperature multiferroic material that has been extensively studied d...
The presence of domains in ferroic materials can negatively affect their macroscopic properties and ...
The presence of domains in ferroic materials can negatively affect their macroscopic properties and ...
Fully epitaxial Fe3O4/BiFeO3 bilayers were deposited on (001) LaAlO3 and SrTiO3 by magnetron sputter...
This dissertation details the study of electric and strain control of antiferromagnetism and ferroma...
When a ferromagnet/antiferromagnet (FM/AF) bilayer is cooled below the Neel temperature TN& lt;/...
Exchange bias coupling at the multiferroic- ferromagnetic interface in BiFeO3/La0.7Sr0.3MnO3 heteros...
We demonstrate a direct correlation between the domain structure of multiferroic BiFeO3 thin films a...
We have combined neutron scattering and piezoresponse force microscopy to show that the exchange fie...
There is growing evidence that domain walls in ferroics can possess emergent properties that are abs...
Magnetoelectric coupling in ferromagnetic/multiferroic systems is often manifested in the exchange b...
There is growing evidence that domain walls in ferroics can possess emergent properties that are abs...
A wealth of fascinating phenomena have been discovered at the BiFeO3 domain walls, examples such as ...
Sterwerf C, Meinert M, Arenholz E, Schmalhorst J-M, Reiss G. Room Temperature Exchange Bias in BiFeO...
This dissertation focuses on the thorough characterization of nanoscale interface regions - so-calle...
BiFeO3 (BFO) is the only room temperature multiferroic material that has been extensively studied d...
The presence of domains in ferroic materials can negatively affect their macroscopic properties and ...
The presence of domains in ferroic materials can negatively affect their macroscopic properties and ...
Fully epitaxial Fe3O4/BiFeO3 bilayers were deposited on (001) LaAlO3 and SrTiO3 by magnetron sputter...
This dissertation details the study of electric and strain control of antiferromagnetism and ferroma...
When a ferromagnet/antiferromagnet (FM/AF) bilayer is cooled below the Neel temperature TN& lt;/...
Exchange bias coupling at the multiferroic- ferromagnetic interface in BiFeO3/La0.7Sr0.3MnO3 heteros...