Multiferroics have received intense attention due to their great application potential in multi-state information storage devices and new types of sensors. Coupling among ferroic orders such as ferroelectricity, (anti-)ferromagnetism, ferroelasticity, etc. will enable dynamic interaction between these ordering parameters. Direct visualization of such coupling behaviour in single phase multiferroic materials is highly desirable for both applications and fundamental study. Manipulation of both ferroelectric and magnetic domains of Bi5Ti3FeO15 thin film using electric field and external mechanical force is reported, which confirms the magnetoelectric coupling in Bi5Ti3FeO15, indicates the electric and magnetic orders are coupled through ferroe...
In situ Transmission Electron Microscopy (TEM) techniques can potentially fill in gaps in the curren...
In situ Transmission Electron Microscopy (TEM) techniques can potentially fill in gaps in the curren...
The control of magnetism via an electric field has attracted substantial attention because of potent...
Cross-coupling of ordering parameters in multiferroic materials by multiple external stimuli other t...
The presence of domains in ferroic materials can negatively affect their macroscopic properties and ...
Multiferroic materials showing coupled electric, magnetic and elastic orderings provide a platform t...
The presence of domains in ferroic materials can negatively affect their macroscopic properties and ...
Tuning the lattice degree of freedom in nanoscale functional crystals is critical to exploit the eme...
Modern data storage devices use the magnetization in a material to store information. Current resear...
Modern data storage devices use the magnetization in a material to store information. Current resear...
The presence of domains in ferroic materials can negatively affect their macroscopic properties and ...
Flexoelectricity is an electromechanical coupling between electrical polarization and a strain gradi...
Understanding switching mechanisms in multiferroics such as BiFeO3 (BFO) is an important challenge t...
Understanding switching mechanisms in multiferroics such as BiFeO3 (BFO) is an important challenge t...
In situ Transmission Electron Microscopy (TEM) techniques can potentially fill in gaps in the curren...
In situ Transmission Electron Microscopy (TEM) techniques can potentially fill in gaps in the curren...
In situ Transmission Electron Microscopy (TEM) techniques can potentially fill in gaps in the curren...
The control of magnetism via an electric field has attracted substantial attention because of potent...
Cross-coupling of ordering parameters in multiferroic materials by multiple external stimuli other t...
The presence of domains in ferroic materials can negatively affect their macroscopic properties and ...
Multiferroic materials showing coupled electric, magnetic and elastic orderings provide a platform t...
The presence of domains in ferroic materials can negatively affect their macroscopic properties and ...
Tuning the lattice degree of freedom in nanoscale functional crystals is critical to exploit the eme...
Modern data storage devices use the magnetization in a material to store information. Current resear...
Modern data storage devices use the magnetization in a material to store information. Current resear...
The presence of domains in ferroic materials can negatively affect their macroscopic properties and ...
Flexoelectricity is an electromechanical coupling between electrical polarization and a strain gradi...
Understanding switching mechanisms in multiferroics such as BiFeO3 (BFO) is an important challenge t...
Understanding switching mechanisms in multiferroics such as BiFeO3 (BFO) is an important challenge t...
In situ Transmission Electron Microscopy (TEM) techniques can potentially fill in gaps in the curren...
In situ Transmission Electron Microscopy (TEM) techniques can potentially fill in gaps in the curren...
In situ Transmission Electron Microscopy (TEM) techniques can potentially fill in gaps in the curren...
The control of magnetism via an electric field has attracted substantial attention because of potent...