Dynamics of polarization switching in a superlattice, consisting of alternating ferroelectric and parelectric layers, is studied by the Landau Khalatnikov equation. The dependence of switching time on the dielectric stiffness of the paraelectric layer, interface coupling and layer thicknesses is examined in detail. The spatial distribution of polarizations at different time in switching is illustrated. The results are discussed with those obtained using the model as proposed by Qu et al. [B.D. Qu, W.L. Zhong and R.H. Prince, Phys. Rev. B 55, 11218 (1997)]. Our results show that the two models give a similar qualitative description of switching dynamics. (C) 2010 Elsevier B.V. All rights reserved
Switching, i.e., polarization reversal, of ferroelectric P(VDF-TrFE) thin films has been investigate...
A self-consistent two-dimensional model of polarization switching in polycrystalline ferroelectrics ...
Understanding the electric polarization switching kinetics in ferroelectric materials is critical to...
We study the switching characteristics of a superlattice consisting of a periodic ferroelectric and ...
A Landau-Ginzburg continuum model for describing a periodic superlattice consisting of alternating f...
A Landau-Devonshire theory with Landau-Khalatnikov dynamic equation is used to investigate the polar...
Ferroelectric superlattices comprising two or more different layers are currently a topic of active...
The polarization switching properties of ferroelectric materials have been extensively studied, both...
We have used a lattice model based on the Landau-Ginzburg theory to examine the ferroelectric proper...
In this thesis, we investigate the switching dynamics in thin film ferroelectrics. Ferroelectric mat...
A detailed analysis of polarization reversal in bulk for second-order ferroelectric (FE) phase trans...
ABSTRACT A detailed analysis of polarization reversal in ferroelectrics has been performed, in the ...
We examined the influence of dielectric stiffness, interface, and layer thickness on the hysteresis ...
A thermodynamic model to study the effect of interface intermixing on polarization of ferroelectric ...
A stochastic model for polarization switching in tetragonal ferroelectric ceramics is introduced, wh...
Switching, i.e., polarization reversal, of ferroelectric P(VDF-TrFE) thin films has been investigate...
A self-consistent two-dimensional model of polarization switching in polycrystalline ferroelectrics ...
Understanding the electric polarization switching kinetics in ferroelectric materials is critical to...
We study the switching characteristics of a superlattice consisting of a periodic ferroelectric and ...
A Landau-Ginzburg continuum model for describing a periodic superlattice consisting of alternating f...
A Landau-Devonshire theory with Landau-Khalatnikov dynamic equation is used to investigate the polar...
Ferroelectric superlattices comprising two or more different layers are currently a topic of active...
The polarization switching properties of ferroelectric materials have been extensively studied, both...
We have used a lattice model based on the Landau-Ginzburg theory to examine the ferroelectric proper...
In this thesis, we investigate the switching dynamics in thin film ferroelectrics. Ferroelectric mat...
A detailed analysis of polarization reversal in bulk for second-order ferroelectric (FE) phase trans...
ABSTRACT A detailed analysis of polarization reversal in ferroelectrics has been performed, in the ...
We examined the influence of dielectric stiffness, interface, and layer thickness on the hysteresis ...
A thermodynamic model to study the effect of interface intermixing on polarization of ferroelectric ...
A stochastic model for polarization switching in tetragonal ferroelectric ceramics is introduced, wh...
Switching, i.e., polarization reversal, of ferroelectric P(VDF-TrFE) thin films has been investigate...
A self-consistent two-dimensional model of polarization switching in polycrystalline ferroelectrics ...
Understanding the electric polarization switching kinetics in ferroelectric materials is critical to...