There is growing evidence that domain walls in ferroics can possess emergent properties that are absent in the bulk. For example, 180° ferroelectric domain walls in the ferroelectric-antiferromagnetic BiFeO<sub>3</sub> are particularly interesting because they have been predicted to possess a range of intriguing behaviors, including electronic conduction and enhanced magnetization. To date, however, ordered arrays of such domain structures have not been reported. Here, we report the observation of 180° stripe nanodomains in (110)-oriented BiFeO<sub>3</sub> thin films grown on orthorhombic GdScO<sub>3</sub> (010)<sub>O</sub> substrates and their impact on exchange coupling to metallic ferromagnets. Nanoscale ferroelectric 180° stripe domains...
Ferroelectric domain formation is an essential feature in ferroelectric thin films. These domains an...
Erasable electrical conductive domain walls in an insulating ferroelectric matrix provide novel func...
Ferroelectric materials have been utilized in a broad range of electronic, optical, and electromecha...
There is growing evidence that domain walls in ferroics can possess emergent properties that are abs...
We demonstrate a direct correlation between the domain structure of multiferroic BiFeO3 thin films a...
We demonstrate a direct correlation between the domain structure of multiferroic BiFeO3 thin films a...
A wealth of fascinating phenomena have been discovered at the BiFeO3 domain walls, examples such as ...
Ferroelectrics are materials with a spontaneous electrical polarization, which can be switched by an...
This dissertation focuses on the thorough characterization of nanoscale interface regions - so-calle...
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 ...
We report confinement of ferroelectric domain-wall motion at conducting-nanofilament wall in epitaxi...
Domain walls (DWs) have become an essential component in nanodevices based on ferroic thin films. Th...
Domain walls in multiferroics can exhibit intriguing behaviors that are significantly different from...
Magnetoelectric coupling in ferromagnetic/multiferroic systems is often manifested in the exchange b...
Ferroelectric domain formation is an essential feature in ferroelectric thin films. These domains an...
Erasable electrical conductive domain walls in an insulating ferroelectric matrix provide novel func...
Ferroelectric materials have been utilized in a broad range of electronic, optical, and electromecha...
There is growing evidence that domain walls in ferroics can possess emergent properties that are abs...
We demonstrate a direct correlation between the domain structure of multiferroic BiFeO3 thin films a...
We demonstrate a direct correlation between the domain structure of multiferroic BiFeO3 thin films a...
A wealth of fascinating phenomena have been discovered at the BiFeO3 domain walls, examples such as ...
Ferroelectrics are materials with a spontaneous electrical polarization, which can be switched by an...
This dissertation focuses on the thorough characterization of nanoscale interface regions - so-calle...
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 ...
We report confinement of ferroelectric domain-wall motion at conducting-nanofilament wall in epitaxi...
Domain walls (DWs) have become an essential component in nanodevices based on ferroic thin films. Th...
Domain walls in multiferroics can exhibit intriguing behaviors that are significantly different from...
Magnetoelectric coupling in ferromagnetic/multiferroic systems is often manifested in the exchange b...
Ferroelectric domain formation is an essential feature in ferroelectric thin films. These domains an...
Erasable electrical conductive domain walls in an insulating ferroelectric matrix provide novel func...
Ferroelectric materials have been utilized in a broad range of electronic, optical, and electromecha...