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Ferroelectricity in atomically thin bilayer structures has been recently predicted1 and measured[2-4] in two-dimensional (2D) materials with hexagonal non-centrosymmetric unit-cells. Interestingly, the crystal symmetry translates lateral…

Fe-doped ZnO nanocrystals are successfully synthesized and structurally characterized by using x-ray diffraction and transmission electron microscopy. Magnetization measurements on the same system reveal a ferromagnetic to paramagnetic…

Hf and Zr nitrides are promising compounds for many technologically important areas, including high temperature structural applications, quantum computing and solar/optical applications. This article reports on a comprehensive…

Materials Science · Physics 2024-12-10 Jonathan Li , Derick Ober , Anton Van der Ven

MoTe2 is a rare transition-metal ditelluride having two kinds of layered polytypes, hexagonal structure with trigonal prismatic Mo coordination and monoclinic structure with octahedral Mo coordination. The monoclinic distortion in the…

Materials Science · Physics 2015-02-20 Koji Ikeura , Hideaki Sakai , Mohammad Saeed Bahramy , Shintaro Ishiwata

The realization of intertwined ferroelasticity and ferromagnetism in two-dimensional (2D) lattices is of great interest for broad nanoscale applications, but still remains a remarkable challenge. Here, we propose an alternative approach to…

Materials Science · Physics 2021-10-13 Yan Liang , Xingshuai Lv , Thomas Frauenheim

The recent observation of a ferroelectric-like structural transition in metallic LiOsO$_3$ has generated a flurry of interest in the properties of polar metals. Such materials are thought to be rare because free electrons screen out the…

Materials Science · Physics 2016-02-29 Nicole A. Benedek , Turan Birol

Strong coupling among spontaneous structural symmetric breaking, magnetism and metallicity in an intrinsic polar magnetic metal can give rise to novel physical phenomena and holds great promise for applications in spintronics. Here, we…

Materials Science · Physics 2025-11-04 Hong-Fei Huang , Houssam Sabri , Jiadong Zang , Jie-Xiang Yu

Multiferroic BiFeO$_3$ (BFO) possesses a rich phase diagram that allows strain tuning of its properties in thin-film form. In particular, at large compressive strain, a supertetragonal (T) phase with giant polarization is stabilized over…

Measurements of the low-frequency (f<= 100 kHz) permittivity at T<= 160 K and dc resistivity (T<= 430 K) are reported for La(1-x)Ca(x)MnO(3) (0<= x<= 0.15). Static dielectric constants are determined from the low-T limiting behavior of the…

Strongly Correlated Electrons · Physics 2009-11-11 K. P. Neupane , J. L. Cohn , H. Terashita , J. J. Neumeier

The metastable orthorhombic phase of hafnia is generally obtained in polycrystalline films, whereas in epitaxial films, its formation has been much less investigated. We have grown Hf0.5Zr0.5O2 films by pulsed laser deposition, and the…

Materials Science · Physics 2019-02-28 Jike Lyu , Ignasi Fina , Raul Solanas , Josep Fontcuberta , Florencio Sánchez

To minimize their electrostatic energy, insulating ferroelectric films tend to break up into nanoscale ``Kittel'' domains of opposite polarization that are separated by uncharged 180$^\circ$ domain walls. Here, I report on self-consistent…

Mesoscale and Nanoscale Physics · Physics 2022-10-14 W. A. Atkinson

The structural stabilities of the monoclinic and tetragonal phases of Si-doped HfO$_{2}$ at finite temperatures were analyzed using a computational scheme to assess the effects of impurity doping. The finite temperature effects considered…

The switching of electric polarization induced by electric fields -a fundamental functionality of ferroelectrics- is closely associated with the motions of the domain walls that separate regions with distinct polarization directions.…

Materials Science · Physics 2014-01-10 F. Kagawa , S. Horiuchi , N. Minami , S. Ishibashi , K. Kobayashi , R. Kumai , Y. Murakami , Y. Tokura

Two-dimensional ferroelectrics with robust polarization offer promising opportunities for non-volatile memory, field-effect transistors, and optoelectronic devices. However, the impact of lattice deformation on polarization and photoinduced…

Materials Science · Physics 2025-06-02 Kun Yang , Jianxin Yu , Jia Zhang , Sheng Meng , Jin Zhang

Polar distortions in solids give rise to the well-known functionality of switchable macroscopic polarisation in ferroelectrics and, when combined with strong spin-orbit coupling, can mediate giant spin splittings of electronic states. While…

The first switchable electric polarization in metals was recently discovered in bilayer and trilayer WTe2. Strangely, despite the tininess of the ordered polarization, the ferroelectricity survives up to 350 K, rendering the mechanism of…

Materials Science · Physics 2025-07-25 Fangyuan Gu , Ruoshi Jiang , Wei Ku

We investigate the polarization switching mechanism in ferroelectric-dielectric (FE-DE) stacks and its dependence on the dielectric thickness (TDE). We fabricate HZO-Al2O3 (FE-DE) stack and experimentally demonstrate a decrease in remnant…

Applied Physics · Physics 2021-10-04 Atanu K. Saha , Mengwei Si , Peide D. Ye , Sumeet K. Gupta

We investigate the doping of a geometrically frustrated spin ladder with static holes by a complementary approach using exact diagonalization and quantum dimers. Results for thermodynamic properties, the singlet density of states, the…

Strongly Correlated Electrons · Physics 2010-01-20 George B. Martins , Wolfram Brenig

We consider a model of the double perovskite Ba2FeReO6, a room temperature ferrimagnet with correlated and spin-orbit coupled Re t2g electrons moving in the background of Fe moments stabilized by Hund's coupling. We show that for such 3d/5d…

Strongly Correlated Electrons · Physics 2015-06-16 A. M. Cook , A. Paramekanti

Hafnium oxide (HfO2), particularly at low-dimensional scales, exhibits extensive promising applications in ultrahigh density devices like low-power logic and non-volatile memory devices due to its compatibility with current semiconductor…