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We report our first-principles investigations on three polytypes of BaTiO3 (BTO): a paraelectric phase with cubic Pm-3m structure and two ferroelectric (FE) phases with tetragonal P4mm and rhombohedral R3m structures. We compared the…

Materials Science · Physics 2013-07-02 Yu-Seong Seo , Jai Seok Ahn

We study ferroelectricity in the classic perovskite ferroelectric PbTiO$_3$ to high pressures with density functional theory (DFT) and experimental diamond-anvil techniques. We use second harmonic generation (SHG) spectroscopy to detect…

Materials Science · Physics 2024-11-04 R. E. Cohen , Yangzheng Lin , Muhtar Ahart , Russell J. Hemley

Highly-crystalline ferroelectric oxides integrated on Si hold great promise for energy-efficient memory and logic technologies. Exploiting epitaxial strain engineering in these materials is, however, severely hampered on Si, where the large…

Materials Science · Physics 2026-04-27 Jingtian Zhao , Beatriz Noheda , Martin F. Sarott

We have investigated the atomistic structure of the 180-degree and 90-degree domain boundaries in the ferroelectric perovskite compound PbTiO3 using a first-principles ultrasoft-pseudopotential approach. For each case we have computed the…

Materials Science · Physics 2009-11-07 B. Meyer , David Vanderbilt

Perovskite LaTiO$_3$ bulk is a typical Mott-insulator with G-type antiferromagnetic order. In this work, the biaxial strain effects on the ground magnetic order of LaTiO$_3$ films grown on various substrates have been studied. For the…

Materials Science · Physics 2014-01-10 Yakui Weng , Xin Huang , Yankun Tang , Shuai Dong

We present results of combined density functional theory plus dynamical mean-field theory (DFT+DMFT) calculations, which show that the Mott insulator LaTiO3 undergoes an insulator-to-metal transition under compressive epitaxial strain of…

Strongly Correlated Electrons · Physics 2014-04-17 Krzysztof Dymkowski , Claude Ederer

Lead titanate (PbTiO3) is a classical example of a ferroelectric perovskite oxide illustrating a displacive phase transition accompanied by a softening of a symmetry-breaking mode. The underlying assumption justifying the soft-mode theory…

Materials Science · Physics 2015-06-12 J. Frantti , Y. Fujioka , A. Puretzky , Y. Xie , Z. -G. Ye , A. M. Glazer

We investigate the impact of uniaxial strain on atomic shifts, dipolar interactions, polarization and electric permittivity in TiO$_2$ (rutile) by using two different implementations of density functional theory. It is shown that…

Materials Science · Physics 2011-11-11 Anna Grünebohm , Mario Siewert , Peter Entel , Claude Ederer

Freestanding perovskite oxide membranes provide a novel platform for elastic strain engineering, enabling the manipulation of phonon transport free from substrate clamping. In this work, we investigate the thermal transport properties of…

Materials Science · Physics 2026-02-10 Ziyan Qian , Guangwu Zhang , Weikun Zhou , Tsukasa Katayama , Qiye Zheng

We investigate the effect of epitaxial strain on the Mott metal-insulator transition (MIT) in perovskite systems with d^1 and d^2 electron configuration of the transition metal (TM) cation. We first discuss the general trends expected from…

Strongly Correlated Electrons · Physics 2016-12-14 Gabriele Sclauzero , Krzysztof Dymkowski , Claude Ederer

Several experiments conducted over decades have revealed that the perovskite-structured BaCeO3 goes through a series of temperature-induced structural phase transitions. However, it has been frequently observed that the number of phases and…

Ferroelectric charged domain walls are known for their high electrical conductivity, making them promising candidates for applications in modern electronics. A remarkably high conductivity and nominal charge density has been found in the…

Materials Science · Physics 2026-05-14 Petr S. Bednyakov , Iegor Rafalovskyi , Jiri Hlinka

Er3+ color centers are promising candidates for quantum science and technology due to their long electron and nuclear spin coherence times, as well as their desirable emission wavelength. By selecting host materials with suitable,…

SrTiO$_3$ is an incipient ferroelectric on the verge of a polar instability, which is avoided at low temperatures by quantum fluctuations. Within this unusual quantum paraelectric phase, superconductivity persists despite extremely dilute…

Superconductivity · Physics 2019-09-12 Ryan Russell , Noah Ratcliff , Kaveh Ahadi , Lianyang Dong , Susanne Stemmer , John W. Harter

Artificial PbTiO$_{3}$/SrTiO$_{3}$ superlattices were constructed using off-axis RF magnetron sputtering. X-ray diffraction and piezoelectric atomic force microscopy were used to study the evolution of the ferroelectric polarization as the…

Materials Science · Physics 2009-11-11 M. Dawber , C. Lichtensteiger , M. Cantoni , M. Veithen , P. Ghosez , K. Johnston , K. M. Rabe , J. -M. Triscone

Strain is known to greatly influence low temperature oxygen electrocatalysis on noble metal films, leading to significant enhancements in bifunctional activity essential for fuel cells and metal-air batteries. However, its catalytic impact…

Perovskite solid solutions PbHfO3-PbSnO3 offer valuable opportunities for studying the formation mechsnisms of incommensurate phases, owing to the presence of an intermediate (between cubic and incommensurate) phase, which is stabilized in…

First-principles molecular dynamics simulations have been employed to analyze the proton diffusion in cubic BaZrO3 perovskite at 1300K, and a non-linear effect of an applied isometric strain of 2% on the lattice parameter has been observed.…

Materials Science · Physics 2020-07-30 Marco Fronzi , Yoshitaka Tateyama , Nicola Marzari , Enrico Traversa

Domain structures of 320 nm thin epitaxial films of ferroelectric PbTiO3 grown by MOCVD technique in identical conditions on SmScO3 and TbScO3 perovskite sub- strates have been investigated by Raman spectroscopy and piezoresponse force…

Materials Science · Physics 2015-06-15 F. Borodavka , I. Gregora , A. Bartasyte , S. Margueron , V. Plausinaitiene , A. Abrutis , J. Hlinka

Using data obtained from first-principles calculations, we show that the position of the morphotropic phase boundary (MPB) and transition temperature at MPB in ferroelectric perovskite solutions can be predicted with quantitative accuracy…

Materials Science · Physics 2009-11-11 Ilya Grinberg , Matthew R. Suchomel , P. K. Davies , Andrew M. Rappe
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