A conceptual problem of the electric-field mediated polarization correlations during a stochastic formation of polarization domain structure in ferroelectrics is addressed by using an exactly solvable stochastic model of polarization development in a uniaxial ferroelectric [Phys. Rev. B 107, 144109 (2023)]. A full set of time-dependent two-point correlation coefficients between all random variables is derived analytically, evaluated numerically and presented graphically in 3D. They are particularly required for the analysis of nonlinear phenomena involving spatial dispersion like optical second harmonic generation and scattering.Comment: 29 pages, 11 figure
Ferroelectrics are multifunctional smart materials finding applications in sensor technology, microm...
An expression is derived for the correlation between intensity fluctuations at pairs of points in a ...
We investigate the dynamics of the instantaneous polarization state of stationary, partially polariz...
A self-consistent stochastic model of domain structure formation in a uniaxial ferroelectric, quench...
A formula is derived for the correlation between intensity fluctuations at two points in the cross-s...
The analysis presented in this paper resolves an outstanding controversial issue of statistical opti...
Electric depolarization fields have a great impact on the polarization-switching kinetics in ferroel...
A formula is derived for the correlation between intensity fluctuations at two points in the cross-s...
A stochastic model for polarization switching in tetragonal ferroelectric ceramics is introduced, wh...
The analysis presented in this paper resolves an outstanding controversial issue of statistical opti...
Analysis of statistical distributions and auto- and cross correlations of polarization and electric ...
The expressions for the spontaneous polar contribution delta n (i) (s) to the principal values of th...
It is shown that, for a 3 × 3 correlation matrix Wij(r, r, ω), (i, j = x, y, z) of the electric vect...
Consecutive stochastic 90° polarization switching events, clearly resolved in recent experiments, ar...
A self-consistent two-dimensional model of polarization switching in polycrystalline ferroelectrics ...
Ferroelectrics are multifunctional smart materials finding applications in sensor technology, microm...
An expression is derived for the correlation between intensity fluctuations at pairs of points in a ...
We investigate the dynamics of the instantaneous polarization state of stationary, partially polariz...
A self-consistent stochastic model of domain structure formation in a uniaxial ferroelectric, quench...
A formula is derived for the correlation between intensity fluctuations at two points in the cross-s...
The analysis presented in this paper resolves an outstanding controversial issue of statistical opti...
Electric depolarization fields have a great impact on the polarization-switching kinetics in ferroel...
A formula is derived for the correlation between intensity fluctuations at two points in the cross-s...
A stochastic model for polarization switching in tetragonal ferroelectric ceramics is introduced, wh...
The analysis presented in this paper resolves an outstanding controversial issue of statistical opti...
Analysis of statistical distributions and auto- and cross correlations of polarization and electric ...
The expressions for the spontaneous polar contribution delta n (i) (s) to the principal values of th...
It is shown that, for a 3 × 3 correlation matrix Wij(r, r, ω), (i, j = x, y, z) of the electric vect...
Consecutive stochastic 90° polarization switching events, clearly resolved in recent experiments, ar...
A self-consistent two-dimensional model of polarization switching in polycrystalline ferroelectrics ...
Ferroelectrics are multifunctional smart materials finding applications in sensor technology, microm...
An expression is derived for the correlation between intensity fluctuations at pairs of points in a ...
We investigate the dynamics of the instantaneous polarization state of stationary, partially polariz...