cited By 44International audienceA first-principles-based effective Hamiltonian is used to investigate low-temperature properties of Ba(Zr,Ti)O3 relaxor ferroelectrics under an increasing dc electric field. This system progressively develops an electric polarization that is highly nonlinear with the dc field. This development leads to a maximum of the static dielectric response at a critical field, Eth, and involves four different field regimes. Each of these regimes is associated with its own behavior of polar nanoregions, such as shrinking, flipping, and elongation of dipoles or change in morphology. The clusters propagating inside the whole sample, with dipoles being parallel to the field direction, begin to form at precisely the Eth cri...
SUMMARY Relaxor ferroelectrics exhibit a very unusual polarization behavior from which derive unique...
The formation of polar nanoregions through solid-solution additions is known to enhance significantl...
The formation of polar nanoregions through solid-solution additions is known to enhance significantl...
cited By 44International audienceA first-principles-based effective Hamiltonian is used to investiga...
cited By 44International audienceA first-principles-based effective Hamiltonian is used to investiga...
cited By 44International audienceA first-principles-based effective Hamiltonian is used to investiga...
cited By 44International audienceA first-principles-based effective Hamiltonian is used to investiga...
peer reviewedAn atomistic effective Hamiltonian is used to investigate electrocaloric (EC) effects o...
First-principles-based effective Hamiltonian simulations are used to reveal the hidden connection be...
First-principles-based effective Hamiltonian simulations are used to reveal the hidden connection be...
peer reviewedAn atomistic effective Hamiltonian is used to investigate electrocaloric (EC) effects o...
First-principles-based effective Hamiltonian simulations are used to reveal the hidden connection be...
First-principles-based effective Hamiltonian simulations are used to reveal the hidden connection be...
Switchable polar properties of ferroelectric and multiferroic nanostructures are ideal to further di...
The current work uses a phase-field model to design nanoscale ferroelectric device concepts and to e...
SUMMARY Relaxor ferroelectrics exhibit a very unusual polarization behavior from which derive unique...
The formation of polar nanoregions through solid-solution additions is known to enhance significantl...
The formation of polar nanoregions through solid-solution additions is known to enhance significantl...
cited By 44International audienceA first-principles-based effective Hamiltonian is used to investiga...
cited By 44International audienceA first-principles-based effective Hamiltonian is used to investiga...
cited By 44International audienceA first-principles-based effective Hamiltonian is used to investiga...
cited By 44International audienceA first-principles-based effective Hamiltonian is used to investiga...
peer reviewedAn atomistic effective Hamiltonian is used to investigate electrocaloric (EC) effects o...
First-principles-based effective Hamiltonian simulations are used to reveal the hidden connection be...
First-principles-based effective Hamiltonian simulations are used to reveal the hidden connection be...
peer reviewedAn atomistic effective Hamiltonian is used to investigate electrocaloric (EC) effects o...
First-principles-based effective Hamiltonian simulations are used to reveal the hidden connection be...
First-principles-based effective Hamiltonian simulations are used to reveal the hidden connection be...
Switchable polar properties of ferroelectric and multiferroic nanostructures are ideal to further di...
The current work uses a phase-field model to design nanoscale ferroelectric device concepts and to e...
SUMMARY Relaxor ferroelectrics exhibit a very unusual polarization behavior from which derive unique...
The formation of polar nanoregions through solid-solution additions is known to enhance significantl...
The formation of polar nanoregions through solid-solution additions is known to enhance significantl...