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Three different film systems have been systematically investigated to understand the effects of strain and substrate constraint on the phase transitions of perovskite films. In SrTiO$_3$ films, the phase transition temperature T$_C$ was…

Other Condensed Matter · Physics 2007-05-23 Feizhou He , B. O. Wells , Z. -G. Ban , S. P. Alpay , S. Grenier , S. M. Shapiro , Weidong Si , A. Clark , X. X. Xi

We have studied the cubic to tetragonal phase transition in epitaxial SrTiO$_3$ films under various biaxial strain conditions using synchrotron X-ray diffraction. Measuring the superlattice peak associated with TiO$_6$ octahedra rotation in…

Condensed Matter · Physics 2007-05-23 Feizhou He , B. O. Wells , S. M. Shapiro , M. v. Zimmermann , A. Clark , X. X. Xi

Epitaxial strain is a powerful means to engineer emergent phenomena in thin films and heterostructures. Here, we demonstrate that KTaO3, a cubic perovskite in bulk form, can be epitaxially strained into a highly tunable ferroelectric. KTaO3…

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

Using a combination of first-principles and effective-Hamiltonian approaches, we map out the structure of BaTiO3 under epitaxial constraints applicable to growth on perovskite substrates. We obtain a phase diagram in temperature and misfit…

We have investigated the out-of-plane lattice relaxation related to the ferroelectric transitions in epitaxial BaTiO$_3$ (BTO) films using synchrotron X-ray diffraction. Under either compressive strain or tensile strain, there is evidence…

Materials Science · Physics 2007-05-23 Feizhou He , Barrett O. Wells

Temperature dependent structural phase transitions of SrRuO3 thin films epitaxially grown on SrTiO3(001) single crystal substrates have been studied using high-resolution x-ray diffraction. In contrast to bulk SrRuO3, coherently strained…

Materials Science · Physics 2009-11-13 Arturas Vailionis , Wolter Siemons , Gertjan Koster

The ferromagnetic properties of epitaxial La$_{0.5}$Sr$_{0.5}$CoO$_3$ thin films have been studied. The magnetic transition is affected by both strain and finite thickness. We have used a series of films of different thickness and on…

Materials Science · Physics 2009-11-13 Changkun Xie , J. I. Budnick , B. O. Wells , J. C. Woicik

We demonstrate that SrRuO3 and CaRuO3 thin films undergo a room temperature structural phase transition driven by the substrate imposed epitaxial biaxial strain. As tensile strain increases, ARuO3 (A=Ca, Sr) films transform from the…

Materials Science · Physics 2009-11-13 Arturas Vailionis , Wolter Siemons , Gertjan Koster

Combining effective Hamiltonian and direct $ab$ $initio$ computation, we obtain the phase diagram of SnTiO$_{3}$ with respect to epitaxial strain and temperature, demonstrating the complex features of the phase diagram and providing insight…

Materials Science · Physics 2018-11-20 D. Wang , L. Liu , J. Liu , N. Zhang , X. Wei

Effect of biaxial tensile strains on optical functions and band edge transitions of ultra thin epitaxial films was studied using as an example a 13 nm thick SrTiO3 films deposited on KTaO3(100) single-crystal substrates. Optical functions…

Materials Science · Physics 2015-05-14 A. Dejneka , M. Tyunina , J. Narkilahti , J. Levoska , D. Chvostova , L. Jastrabik , V. A. Trepakov

The sensitivity of materials properties, particularly those of perovskite oxides, to epitaxial strain has been exploited to great advantage to create materials with new or enhanced properties. Although it has certainly been recognized that…

Materials Science · Physics 2020-09-09 Ethan T. Ritz , Nicole A. Benedek

Rare earth perovskite oxides constitute a wide family of materials presenting functional proper- ties strongly coupled to their crystalline structure. Here, we report on the experimental results on epitaxial PrVO3 deposited on SrTiO3 single…

TbMnO$_{3}$ films have been grown under compressive strain on (001)-oriented SrTiO$_{3}$ crystals. They have an orthorhombic structure and display the (001) orientation. With increasing thickness, the structure evolves from a more symmetric…

Epitaxial strain plays a key role in determining the structure and functionality of thin films, with the choice of substrate being traditionally used to control the magnitude of the applied strain. However, even in the large family of…

Materials Science · Physics 2025-12-12 Ruben Hamming-Green , Ewout van der Veer , Beatriz Noheda

Due to the strong lattice-property relationships which exist in complex oxide epitaxial layers, their electronic and magnetic properties can be modulated by structural distortions induced at the atomic scale. The modification and control…

The experimental data on the thermal properties of the nanostructured perovskite ferroelectrics are presented and analysed. The ability of the modified 3w method for specific heat measurements is discussed and illustrated by the thermal…

Materials Science · Physics 2007-05-23 B. Strukov , S. Davitadze , V. Lemanov , S. Shulman , Y. Uesu , S. Asanuma

It has been well established that both in bulk at ambient pressure and for films under modest strains, cubic SrCoO$_{3-\delta}$ ($\delta < 0.2$) is a ferromagnetic metal. Recent theoretical work, however, indicates that a magnetic phase…

Materials Science · Physics 2015-06-23 S. J. Callori , S. Hu , J. Bertinshaw , Z. Yue , S. Danilkin , X. L. Wang , V. Nagarajan , F. Klose , J. Seidel , C. Ulrich

In the perovskite oxide SrCrO$_{3}$ the interplay between crystal structure, strain and orbital ordering enables a transition from a metallic to an insulating electronic structure under certain conditions. We identified a narrow window of…

Transition metal oxide thin films show versatile electrical, magnetic, and thermal properties which can be tailored by deliberately introducing macroscopic grain boundaries via polycrystalline solids. In this study, we focus on the…

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