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Related papers: First-principles study of PbTiO$_3$ under uniaxial…

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The effect of layer-by-layer heterostructuring and epitaxial strain on lattice instabilities and related ferroelectric properties is investigated from first principles for the [001]-(PbTiO$_3$)$_1$(PbZrO$_3$)$_1$ superlattice and pure…

Materials Science · Physics 2009-11-10 Claudia Bungaro , K. M. Rabe

Ferroelectric materials such as BaTiO3 exhibit spontaneous polarization that can be reoriented by an external electric field, forming the basis of various memory, actuator, and sensor applications. The polarization switching behavior,…

Materials Science · Physics 2026-04-01 Po-Yen Chen , Teruyasu Mizoguchi

Recent years have seen tremendous progress in experimental techniques to create uniaxial strain. Motivated by these advances we investigate the effect of uniaxial strain on LaMnO$_3$ employing ab-initio dynamical mean-field theory, and put…

Strongly Correlated Electrons · Physics 2024-02-23 Florian P. Lindner , Markus Aichhorn , Hrishit Banerjee

The phase transition behaviour of PbTiO3 and BaTiO3 under (111) epitaxial strain is investigated using density-functional theory calculations. From tensile strains of +0.015 to compressive strains of -0.015, PbTiO3 undergoes phase…

Materials Science · Physics 2009-11-13 Riku Oja , Karen Johnston , Johannes Frantti , Risto M. Nieminen

We revisit the phase diagram of BaTiO$_3$ under biaxial strain using a first principles-based effective Hamiltonian approach. We show that, in addition to the tetragonal ($c$), quasi-rhombohedral ($r$), and quasi-orthorhombic ($aa$)…

Materials Science · Physics 2016-09-30 Anna Grünebohm , Madhura Marathe , Claude Ederer

We calculate from first principles the nonlinear piezoelectric response of ferroelectric PbTiO3 for the case of a polarization-enhancing electric field applied along the tetragonal axis. We focus mainly on the case of fixed in-plane lattice…

Materials Science · Physics 2011-03-03 Anindya Roy , Massimiliano Stengel , David Vanderbilt

First principles calculations are used to investigate the effects of epitaxial strain on the structure of the perovskite oxide CaTiO$_3$, with particular focus on the stabilization of a ferroelectric phase related to a polar instability…

Materials Science · Physics 2013-05-29 C. -J. Eklund , C. J. Fennie , K. M. Rabe

The effect of epitaxial strain on the phonon spectra, crystal structure, spontaneous polarization, dielectric, piezoelectric, and elastic properties of (001)-oriented ferroelectric (BaTiO$_3$)$_m$/(SrTiO$_3$)$_n$ superlattices ($m = n =…

Materials Science · Physics 2016-07-11 Alexander I. Lebedev

Our first-principles computations show that the ground state of PbTiO$_3$ under hydrostatic pressure transforms discontinuously from $P4mm$ to $R3c$ at 9 GPa. Spontaneous polarization decreases with increasing pressure so that the $R3c$…

Materials Science · Physics 2007-05-23 J. Frantti , Y. Fujioka , R. M. Nieminen

By using first-principles methods based on density functional theory we revisited the zero-temperature phase diagram of stoichiometric SrCoO3, a ferromagnetic metallic perovskite that undergoes significant structural, electronic, and…

Materials Science · Physics 2016-12-21 Pablo Rivero , Claudio Cazorla

Tetragonal ferroelectric/ferroelectric BaTiO3/PbTiO3 superlattice under uniaxial tensile stress along the c axis is investigated from first principles. We show that the calculated ideal tensile strength is 6.85 GPa and that the superlattice…

Mesoscale and Nanoscale Physics · Physics 2009-11-23 Yifeng Duan , Chunmei Wang , Gang Tang , Changqing Chen

Using a first-principles approach based on density-functional theory, we find that a large tetragonal strain can be induced in PbTiO3 by application of a negative hydrostatic pressure. The structural parameters and the dielectric and…

Materials Science · Physics 2009-11-10 Silvia Tinte , Karin M. Rabe , David Vanderbilt

We use first principles density functional theory calculations to investigate the effect of biaxial strain in the low-temperature structural and ferroelectric properties of [111]-oriented SrTiO$_3$. We find that [111] biaxial strain,…

Materials Science · Physics 2019-03-27 Sebastian E. Reyes-Lillo , Karin M. Rabe , Jeffrey B. Neaton

The changes of polarizational, elastic and structural properties of mutiferroic BiFeO3 under [111] direction uniaxial stress are calculated using density functional theory within the Perdew-Burke- Ernzerhof revised for solids (PBEsol) + U…

Materials Science · Physics 2012-06-04 Huafeng Dong , Jingbo Li , Zhigang Wu

We report first-principles calculations on the coupling between epitaxial strain, polarization, and oxygen octahedra rotations in monodomain (PbTiO$_{3}$)$_{n}$/(SrTiO$_{3}$)$_{n}$ superlattices. We show how the interplay between (i) the…

Materials Science · Physics 2015-05-28 Pablo Aguado-Puente , Pablo García-Fernández , Javier Junquera

Density functional calculations are performed to study the effect of epitaxial strain on PbZrO3. We find a remarkably small energy difference between the epitaxially strained polar R3c and nonpolar Pbam structures over the full range of…

Materials Science · Physics 2014-05-15 Sebastian E. Reyes-Lillo , Karin M. Rabe

An effective Hamiltonian for the ferroelectric transition in $PbTiO_3$ is constructed from first-principles density-functional-theory total-energy and linear-response calculations through the use of a localized, symmetrized basis set of…

mtrl-th · Physics 2009-10-28 K. M. Rabe , U. V. Waghmare

Ground-state structure is found and pressure-induced phase transitions up to 210 kbar are studied in mercury titanate from first principles within the density functional theory. It is established that the $R3c$ structure experimentally…

Materials Science · Physics 2013-05-29 Alexander I. Lebedev

Despite the technological significance of the tetragonal PbTiO3 for the piezoelectric transducer industry, its high pressure behaviour is quite controversial as two entirely different scenarios, involving pressure induced (1) morphotropic…

Understanding ferroelectricity is of both fundamental and technological importance to further stimulate the development of new materials designs and manipulations. Here, we perform an in-depth first-principle study on the well-known…

Materials Science · Physics 2022-07-12 Simon Mellaerts , Jin Won Seo , Valeri Afanas'ev , Michel Houssa , Jean-Pierre Locquet
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