A stochastic model of electric-field-driven polarization reversal in orthorhombic ferroelectrics is advanced, providing a description of their temporal electromechanical response. The theory accounts for all possible parallel and sequential switching events. Application of the model to the simultaneous measurements of polarization and strain kinetics in a lead-free orthorhombic (K,Na)NbO3-based ferroelectric ceramic over a wide timescale of seven orders of magnitude allowed identification of preferable polarization switching paths, fractions of individual switching processes, and their activation fields. Particularly, the analysis revealed substantial contributions of coherent non-180° switching events, which do not cause macroscopic strain...
A self-consistent two-dimensional model of polarization switching in polycrystalline ferroelectrics ...
Our understanding of the rate-dependent electro-mechanical response of ferroelectric ceramics is inc...
Dispersive polarization response of ferroelectric PZT ceramics is analyzed assuming theinhomogeneous...
A stochastic model for the field-driven polarization reversal in rhombohedral ferroelectrics is deve...
Consecutive stochastic 90° polarization switching events, clearly resolved in recent experiments, ar...
A stochastic model for polarization switching in tetragonal ferroelectric ceramics is introduced, wh...
Ferroelectrics are multifunctional smart materials finding applications in sensor technology, microm...
The dynamics of polarization switching in a soft lead-zirconate-titanate ceramic has been studied ov...
The classical Kolmogorov-Avrami-Ishibashi (KAI) model successfully describes polarization switching ...
Ferroelectric materials find application in numerous electronic devices and are continuously enablin...
Temporal behavior of ferroelectric ceramics during the polarization switching cannot be satisfactori...
Analysis of statistical distributions and auto- and cross correlations of polarization and electric ...
Ferroelectrics are multifunctional smart materials finding applications in sensor technology, microm...
Electric depolarization fields have a great impact on the polarization-switching kinetics in ferroel...
Polarization reversal is the most fundamental physical process in ferroelectrics and directly or ind...
A self-consistent two-dimensional model of polarization switching in polycrystalline ferroelectrics ...
Our understanding of the rate-dependent electro-mechanical response of ferroelectric ceramics is inc...
Dispersive polarization response of ferroelectric PZT ceramics is analyzed assuming theinhomogeneous...
A stochastic model for the field-driven polarization reversal in rhombohedral ferroelectrics is deve...
Consecutive stochastic 90° polarization switching events, clearly resolved in recent experiments, ar...
A stochastic model for polarization switching in tetragonal ferroelectric ceramics is introduced, wh...
Ferroelectrics are multifunctional smart materials finding applications in sensor technology, microm...
The dynamics of polarization switching in a soft lead-zirconate-titanate ceramic has been studied ov...
The classical Kolmogorov-Avrami-Ishibashi (KAI) model successfully describes polarization switching ...
Ferroelectric materials find application in numerous electronic devices and are continuously enablin...
Temporal behavior of ferroelectric ceramics during the polarization switching cannot be satisfactori...
Analysis of statistical distributions and auto- and cross correlations of polarization and electric ...
Ferroelectrics are multifunctional smart materials finding applications in sensor technology, microm...
Electric depolarization fields have a great impact on the polarization-switching kinetics in ferroel...
Polarization reversal is the most fundamental physical process in ferroelectrics and directly or ind...
A self-consistent two-dimensional model of polarization switching in polycrystalline ferroelectrics ...
Our understanding of the rate-dependent electro-mechanical response of ferroelectric ceramics is inc...
Dispersive polarization response of ferroelectric PZT ceramics is analyzed assuming theinhomogeneous...