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Magnetism in transition-metal systems emerges from exchange interactions that depend sensitively on carrier density. Yet leveraging this sensitivity to deliberately engineer exchange frustration and associated topological spin textures…

Disorder can have a dominating influence on correlated and quantum materials leading to novel behaviors which have no clean limit counterparts. In magnetic systems, spin and exchange disorder can provide access to quantum criticality,…

Dilute magnetic semiconductors (DMS) are nonmagnetic semiconductors doped with magnetic transition metals. The recently discovered DMS material (Ba$_{1-x}$K$_{x}$)(Zn$_{1-y}$Mn$_{y}$)$_{2}$As$_{2}$ offers a unique and versatile control of…

Materials Science · Physics 2018-03-28 M. A. Surmach , B. J. Chen Z. Deng , C. Q. Jin , J. K. Glasbrenner , I. I. Mazin , A. Ivanov , D. S. Inosov

The exchange bias effect is an essential component of magnetic memory and spintronic devices. Whereas recent research has shown that anisotropies perpendicular to the device plane provide superior stability against thermal noise, it has…

Transition metal oxide perovskites are an ideal platform for exploring the interplay between spin, orbital, charge and lattice degrees of freedom. Among them, \ce{LaVO3} has been extensively studied in heterostructures and superlattices,…

Strongly Correlated Electrons · Physics 2026-05-22 Ashutosh Anand , Mukul Kabir

In transition-metal-oxide heterostructures, the anomalous Hall effect (AHE) is a powerful tool for detecting the magnetic state and revealing intriguing interfacial magnetic orderings. However, achieving a larger AHE at room temperature in…

Materials Science · Physics 2023-07-25 Enda Hua , Liang Si , Kunjie Dai , Qing Wang , Huan Ye , Kuan Liu , Jinfeng Zhang , Jingdi Lu , Kai Chen , Feng Jin , Lingfei Wang , Wenbin Wu

The recent observation of ferroelectricity in the metastable phases of binary metal oxides, such as HfO2, ZrO2, Hf0.5Zr0.5O2, and Ga2O3, has garnered a lot of attention. These metastable ferroelectric phases are typically stabilized through…

Materials Science · Physics 2023-03-02 Tengfei Cao , Guodong Ren , Ding-Fu Shao , Evgeny Y. Tsymbal , Rohan Mishra

We report the complex magnetic phase diagram and electronic structure of Cr2(Te1-xWx)O6 systems. While compounds with different x values possess the same crystal structure, they display different magnetic structures below and above xc =…

Materials Science · Physics 2014-09-05 M. Zhu , D. Do , C. R. Dela Cruz , Z. Dun , H. D. Zhou , S. D. Mahanti , X. Ke

Ferroelectric hafnia (HfO2) holds promise for next-generation memory and logic applications because of its CMOS compatibility. However, the high coercive field required for polarization switching in HfO2 remains a critical challenge for…

Materials Science · Physics 2026-03-13 Pravan Omprakash , Gwan Yeong Jung , Guodong Ren , Rohan Mishra

Superconductivity in copper oxides emerges on doping holes or electrons into their Mott insulating parent compounds. The spin excitations are thought to be the mediating glue for the pairing in superconductivity. Here the momentum and…

Superconductivity · Physics 2017-03-28 Pengfei Jing , Huaisong Zhao , Lulin Kuang , Yu Lan , Shiping Feng

The evolution of electronic (spin and charge) excitations upon carrier doping is an extremely important issue in superconducting layered cuprates and the knowledge of its asymmetry between electron- and hole-dopings is still fragmentary.…

Local configurational disorder can have a dominating role in the formation of macroscopic functional responses in strongly correlated materials. Here, we use entropy-stabilization synthesis to create single crystal epitaxial ABO3 perovskite…

Experiments on the iron-pnictide superconductors appear to show some materials where the ground state is fully gapped, and others where low-energy excitations dominate, possibly indicative of gap nodes. Within the framework of a 5-orbital…

Superconductivity · Physics 2015-03-13 A. F. Kemper , T. A. Maier , S. Graser , H. -P. Cheng , P. J. Hirschfeld , D. J. Scalapino

Epitaxial strain has been shown to drive structural phase transitions along with novel functionalities in perovskite-based thin-films. Aliovalent doping at the A-site can drive an insulator-to-metal and magnetic transitions in perovskites…

Materials Science · Physics 2019-09-11 Paresh Chandra Rout , Varadharajan Srinivasan

The bulk-edge correspondence principle, a cornerstone of topological physics, ensures that first-order topological systems host robust chiral edge states in two dimension. This was later extended to higher-order phases, where second-order…

Disordered Systems and Neural Networks · Physics 2026-03-31 Xianbin Wu , Tiantao Qu , Xiaoxuan Shi , Lei Zhang , Jun Chen

Control of magnetic states by external factors has garnered a mainstream status in spintronic research for designing low power consumption and fast-response information storage and processing devices. Previously, magnetic-cation…

It has been shown that oxide ceramics containing multiple transition and/or rare-earth elements in equimolar ratios have a strong tendency to crystallize in simple single phase structures, stabilized by the high configurational entropy. In…

Materials Science · Physics 2019-03-27 Ralf Witte , Abhishek Sarkar , Robert Kruk , Benedikt Eggert , Richard A. Brand , Heiko Wende , Horst Hahn

Selective doping with different R-site ions in rare-earth perovskite RFeO3 compounds offers an effective way to achieve atomic-scale tuning of the complex exchange interactions. In this study, the spin reorientation temperature of Tb-doped…

Materials Science · Physics 2025-09-09 Mingzhu Xue , Xin Li , Shilei Ding , Qixin Li , Wenhao Di , Anhua Wu , Bin He , Shishen Yan , Wenyun Yang , Jinbo Yang

We investigate the doping dependence of the nanoscale electronic and magnetic inhomogeneities in the hole-doping range 0.002<x<0.1 of cobalt based perovskites, La{1-x}Sr_xCoO_3. Using single crystal inelastic neutron scattering and…

Strongly Correlated Electrons · Physics 2011-06-02 A. Podlesnyak , G. Ehlers , M. Frontzek , A. S. Sefat , A. Furrer , Th. Straessle , E. Pomjakushina , K. Conder , F. Demmel , D. I. Khomskii

The stability of mixed halide perovskites against phase separation is crucial for their optoelectronic applications, yet difficult to rationalize due to the interplay of enthalpic, configurational, and dynamical effects. Here we present a…

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