Formation of the dendrite-type self-organized domain structures during polarization reversal at elevated temperatures (above 230°C) has been revealed and studied in stoichiometric lithium niobate LiNbO3 single crystals. Optical, confocal Raman, scanning electron, and piezoelectric force microscopy have been used for domain visualization. It has been shown experimentally that formation of the dendrite-like structures has been attributed to correlated nucleation caused by a field distribution in the vicinity of the charged domain walls. © 2012 American Institute of Physics
The creation of the periodical domain patterns with a submicron period in lithium niobate on insulat...
The equipment of the Ural Center for Shared Use “Modern nanotechnology” Ural Federal University was ...
The kinetics of sidewise domain growth in an inhomogeneous electric field has been investigated in s...
The equipment of Ural Center for Shared Use “Modern Nanotechnology” Ural Federal University was used...
The equipment of the Ural Center for Shared Use “Modern nanotechnology” UrFU was used. The research ...
The research was made possible by Russian Science Foundation (Project № 19-12-00210). The equipment ...
The equipment of the Ural Center for Shared Use “Modern nanotechnology” Ural Federal University was ...
Static domain patterns produced by application of the external electric field in wide temperature ra...
The shapes of isolated domains produced by application of the uniform external electric field in dif...
The formation of the maze domain structures in the plates of congruent lithium niobate single crysta...
The shapes of isolated domains produced by application of the uniform external electric field in dif...
Currently, ferroelectric materials with designed domain structures are considered as a perspective m...
We have studied the ferroelectric nanodomain formation in single crystals of strontium barium niobat...
The equipment of the Ural Center for Shared Use “Modern Nanotechnology” Ural Federal University was ...
Ferroelectric lithium niobate (LiNbO3) crystals with an engineered domain structure have a number of...
The creation of the periodical domain patterns with a submicron period in lithium niobate on insulat...
The equipment of the Ural Center for Shared Use “Modern nanotechnology” Ural Federal University was ...
The kinetics of sidewise domain growth in an inhomogeneous electric field has been investigated in s...
The equipment of Ural Center for Shared Use “Modern Nanotechnology” Ural Federal University was used...
The equipment of the Ural Center for Shared Use “Modern nanotechnology” UrFU was used. The research ...
The research was made possible by Russian Science Foundation (Project № 19-12-00210). The equipment ...
The equipment of the Ural Center for Shared Use “Modern nanotechnology” Ural Federal University was ...
Static domain patterns produced by application of the external electric field in wide temperature ra...
The shapes of isolated domains produced by application of the uniform external electric field in dif...
The formation of the maze domain structures in the plates of congruent lithium niobate single crysta...
The shapes of isolated domains produced by application of the uniform external electric field in dif...
Currently, ferroelectric materials with designed domain structures are considered as a perspective m...
We have studied the ferroelectric nanodomain formation in single crystals of strontium barium niobat...
The equipment of the Ural Center for Shared Use “Modern Nanotechnology” Ural Federal University was ...
Ferroelectric lithium niobate (LiNbO3) crystals with an engineered domain structure have a number of...
The creation of the periodical domain patterns with a submicron period in lithium niobate on insulat...
The equipment of the Ural Center for Shared Use “Modern nanotechnology” Ural Federal University was ...
The kinetics of sidewise domain growth in an inhomogeneous electric field has been investigated in s...