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Related papers: Bi2W2O9: a potentially antiferroelectric Aurivilli…

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Double perovskite iridates $A_2$ZnIrO$_6$ ($A$ = alkaline or lanthanide) show complex magnetic behaviors ranging from weak ferromagnetism to successive antiferromagnetic transitions. Here we report the static ($dc$) and dynamic ($ac$)…

Strongly Correlated Electrons · Physics 2021-02-24 H. Guo , C. Ritter , Y. Su , A. C. Komarek , J. S. Gardner

The class of antiperovskite compounds $A_3B$O ($A$ = Ca, Sr, Ba; $B$ = Sn, Pb) has attracted interest as a candidate 3D Dirac system with topological surface states protected by crystal symmetry. A key factor underlying the rich electronic…

Mesoscale and Nanoscale Physics · Physics 2019-12-18 D. Huang , H. Nakamura , K. Küster , A. Yaresko , D. Samal , N. B. M. Schröter , V. N. Strocov , U. Starke , H. Takagi

Hybrid transition metal oxides continue to attract attention due to their multiple degrees of freedom ($e.g.$, lattice, charge, spin, and orbital) and versatile properties. Here we investigate the magnetic and electronic properties of the…

Strongly Correlated Electrons · Physics 2022-05-17 Ke Yang , Wenjing Xu , Di Lu , Yuxuan Zhou , Lu Liu , Yaozhenghang Ma , Guangyu Wang , Hua Wu

Ferroelectricity is usually found in compound materials composed by different elements. Here, based on first-principles calculations, we reveal the first example of spontaneous electrical polarization and ferroelectricity in stable…

Materials Science · Physics 2017-06-20 Chengcheng Xiao , Fang Wang , Shengyuan A. Yang , Yunhao Lu

Complete magnetoelectric (ME) phase diagrams of orthorhombic $R$MnO$_{3}$ with and without magnetic moments on the $R$ ions have been established. Three kinds of multiferroic ground states, the $ab$-cycloidal, the $bc$-cycloidal, and the…

Strongly Correlated Electrons · Physics 2015-05-14 S. Ishiwata , Y. Kaneko , Y. Tokunaga , Y. Taguchi , T. Arima , Y. Tokura

We report remarkable multiferroic effects in polycrystalline Bi2Fe4O9. High-resolution X-ray diffraction shows that this compound has orthorhombic structure. Magnetic measurements confirm an antiferromagnetic transition around 260 K. A…

Materials Science · Physics 2009-11-13 A. K. Singh , S. D. Kaushik , Brijesh Kumar , A. Venimadhav , P. K. Mishra , V. Siriguri , S. Patnaik

Hybrid organic--inorganic perovskites with broken inversion symmetry provide a fertile ground for uncovering coupled spin-orbit and ferroelectric phenomena. Here, we investigate the layered family (PA)$_2$CsY$_2$X$_7$ (Y = Pb, Sn; X = I,…

Materials Science · Physics 2025-12-01 Divyanshi Tyagi , Saswata Bhattacharya

We study the antiferrodistortive instability and its interaction with ferroelectricity in cubic perovskite compounds. Our first-principles calculations show that coexistence of both instabilities is very common. We develop a…

mtrl-th · Physics 2008-02-03 W. ~Zhong , David Vanderbilt

Halide perovskites have emerged as promising candidates for next generation photovoltaic applications, attracting significant attention in recent years. Through first-principles calculations combined with group-theoretical analyses, we…

Materials Science · Physics 2025-10-03 Urmimala Dey , Jordan A. R. Cowell , Nicholas C. Bristowe

Multiferroic particulate composites have been fabricated by taking the morphotropic phase boundary composition of ferroelectric phase Bi(Ni1/2Ti1/2)O3-PbTiO3 and magnetic phase (Ni,Zn)Fe2O4. The ferroelectric phase has coexisting monoclinic…

Materials Science · Physics 2018-08-06 Rishikesh Pandey , Uma Shankar , Sher Singh Meena , Akhilesh Kumar Singh

Nanoscale electrostatic control of oxide interfaces enables physical phenomena and exotic functionalities beyond the realm of the bulk material. In technologically-relevant ferroelectric thin films, the interface-mediated polarization…

The octahedron tilt transitions of ABX_3 perovskite-structure materials lead to an anti-polar (or antiferroelectric) arrangement of dipoles, with the low temperature structure having six sublattices polarized along various crystallographic…

Strongly Correlated Electrons · Physics 2013-05-29 Philip B. Allen , Yiing-Rei Chen , Santanu Chaudhuri , Clare P. Grey

The ferromagnetic phase of the cubic antiperovskite Mn$_3$ZnC is suggested from first-principles calculation to be a nodal line Weyl semimetal. Features in the electronic structure that are the hallmark of a nodal line Weyl state, a large…

Materials Science · Physics 2019-12-16 Samuel M. L. Teicher , Ida K. Svenningsson , Leslie M. Schoop , Ram Seshadri

The integration of ferroelectrics that exhibit high dielectric, piezoelectric, and thermal susceptibilities with the mainstream semiconductor industry will enable novel device types for widespread applications, and yet there are few…

Materials Science · Physics 2023-01-11 Changming Ke , Yihao Hu , Shi Liu

Using ab initio calculations, unexpected structural instability was recently found in the ground state of the U$_2$Mo compound. Instead of the unstable $I4/mmm$ structure, in this work the $P6/mmm$ ($\# 191$) space group, usually called…

Materials Science · Physics 2016-08-03 E. L. Losada , J. E. Garcés

The iron-based pnictide LaFe2As2 is not superconducting as-synthesized, but it becomes such below Tc around 12 K upon annealing, as a consequence of a structural transition from a phase with collapsed tetragonal crystal structure to an…

Perovskite oxide ferroelectrics show classical soft mode behaviour typical for the onset of a homogeneous long-range polar state and a displacive phase transition. Besides these long wave length properties, local effects are observed by…

Other Condensed Matter · Physics 2007-05-23 A. Bussmann-Holder , H. Buettner , A. R. Bishop

In this work we study the structural stability and electronic properties of the Beryllium sulphide nanowires (NWs) in both zinc blende (ZB) and wurtzite (WZ) phases with triangle and hexagonal cross section, using first principle…

Materials Science · Physics 2015-05-14 Somayeh Faraji , Ali Mokhtari

BaBiO$_3$ is a mixed-valence perovskite which escapes the metallic state through a Bi valence (and Bi-O bond) disproportionation or CDW distortion, resulting in a semiconductor with a gap of 0.8 eV at zero pressure. The evolution of…

Materials Science · Physics 2017-07-11 Roman Martoňák , Davide Ceresoli , Tomoko Kagayama , Yusuke Matsuda , Yuh Yamada , Erio Tosatti

We study a two-component mixture of fermionic dipoles in two dimensions at zero temperature, interacting via a purely repulsive $1/r^3$ potential. This model can be realized with ultracold atoms or molecules, when their dipole moments are…