We studied the structure of interfaces in layered ferroelectrics comprising two different ferroelectric materials with first and/or second order transitions. The layered structure is described using the Landau-Ginzburg theory by including a bilinear coupling at the interface between the two neighboring layers. The interfacial coupling leads to the variation of polarization across the interface from one layer to another. An abrupt or continuous change of polarization across the interface is found to depend on the strength of coupling. For a layered structure having a layer in paraelectric phase, an interface-ordered state is predicted (in the paraelectric layer) as a manifestation of interfacial coupling. The Tilley-Zeks model is compared wi...
The design of the interfacial bondings at metal-oxide interfaces yields exciting new phenomena and c...
We discover that the complex ferroelectric response of layered materials toward interlayer sliding i...
peer reviewedArtifi cially layered superlattices of oxide materials have been intensely investigated...
We studied the structure of interfaces in layered ferroclectrics comprising two different ferroelect...
Interface structures in double-layer ferroelectrics comprising two distinct layers of different pola...
We present a detailed study of intrinsic ferroelectric hysteresis loops in a heterostructure of inte...
A Landau-Ginzburg continuum model for describing a periodic superlattice consisting of alternating f...
A thermodynamic model to study the effect of interface intermixing on polarization of ferroelectric ...
A thermodynamic model is developed to study electrostatic coupling and interface intermixing in supe...
Intrinsic ferroelectric hysteresis behaviours for a heterostructure of interface between two differe...
A theoretical model is developed for n-layered ferroelectric (FE) heterostructures that employs a no...
Ferroelectric superlattices comprising two or more different layers are currently a topic of active...
The control of material interfaces at the atomic level has led to novel interfacial properties and f...
We examined the influence of dielectric stiffness, interface, and layer thickness on the hysteresis ...
A one-dimensional lattice model based on the Landau-Ginzburg theory to study the intrinsic propertie...
The design of the interfacial bondings at metal-oxide interfaces yields exciting new phenomena and c...
We discover that the complex ferroelectric response of layered materials toward interlayer sliding i...
peer reviewedArtifi cially layered superlattices of oxide materials have been intensely investigated...
We studied the structure of interfaces in layered ferroclectrics comprising two different ferroelect...
Interface structures in double-layer ferroelectrics comprising two distinct layers of different pola...
We present a detailed study of intrinsic ferroelectric hysteresis loops in a heterostructure of inte...
A Landau-Ginzburg continuum model for describing a periodic superlattice consisting of alternating f...
A thermodynamic model to study the effect of interface intermixing on polarization of ferroelectric ...
A thermodynamic model is developed to study electrostatic coupling and interface intermixing in supe...
Intrinsic ferroelectric hysteresis behaviours for a heterostructure of interface between two differe...
A theoretical model is developed for n-layered ferroelectric (FE) heterostructures that employs a no...
Ferroelectric superlattices comprising two or more different layers are currently a topic of active...
The control of material interfaces at the atomic level has led to novel interfacial properties and f...
We examined the influence of dielectric stiffness, interface, and layer thickness on the hysteresis ...
A one-dimensional lattice model based on the Landau-Ginzburg theory to study the intrinsic propertie...
The design of the interfacial bondings at metal-oxide interfaces yields exciting new phenomena and c...
We discover that the complex ferroelectric response of layered materials toward interlayer sliding i...
peer reviewedArtifi cially layered superlattices of oxide materials have been intensely investigated...