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The perovksite rare-earth nickelates, RNiO$_3$ (R=La ... Lu), are a class of materials displaying a rich phase-diagram of metallic and insulating phases associated with charge and magnetic order. Being in the charge transfer regime,…

Strongly Correlated Electrons · Physics 2015-04-14 John W. Freeland , Michel van Veenendaal , Jak Chakhalian

We propose a three-dimensional multi-orbital tight-binding model for rare-earth nickelates RNiO$_3$ that treats charge, spin, orbital, and lattice degrees of freedom on equal footing. All model parameters, including the on-site interactions…

Strongly Correlated Electrons · Physics 2026-05-12 Sangeeta Rajpurohit , Liang Z. Tan , Tadashi Ogitsu , Peter E. Blöchl

The insulator-bad metal transition observed in the Jahn-Teller (JT) magnets orthonickelates RNiO$_3$ (R = rare earth or yttrium Y) is considered to be a canonical example of the Mott transition, traditionally described in the framework of…

Strongly Correlated Electrons · Physics 2025-08-12 A. S. Moskvin

Rare-earth nickelates RNiO3 (R=rare-earth element) exhibit three kinds of phase transitions with decreasing temperature: a structural transition from a pseudo-cubic to a monoclinic phase, a metal- insulator transition (MIT), and a magnetic…

We present a systematic density functional theory (DFT) plus Hubbard $U$ study of structural trends and the stability of different magnetically ordered states across the rare-earth nickelate series, $R$NiO$_3$, with $R$ from Lu to La. In…

Materials Science · Physics 2017-10-17 Alexander Hampel , Claude Ederer

The rare-earth nickelates are a rich playground for transport properties, known to host non-Fermi liquid character, resistance saturation and metal-insulator transitions. We report a study of transport in LaNiO3 in the presence of tunable…

The rare earth nickelates RNiO3 are metallic at high temperatures and insulating and magnetically ordered at low temperatures. The low temperature phase has been predicted to be type II multiferroic, i.e. ferroelectric and magnetic order…

Strongly Correlated Electrons · Physics 2021-07-05 I. Ardizzone , J. Teyssier , I. Crassee , A. B. Kuzmenko , D. G. Mazzone , D. J. Gawryluk , M. Medarde , D. van der Marel

Controlled introduction of oxygen vacancies offers an effective route to induce metal-to-insulator transition in strongly correlated rare-earth nickelates ($R$NiO$_3$) at room temperature. However, the role played by the rare-earth cations…

Materials Science · Physics 2024-12-30 Devang Bhagat , Ranga Teja Pidathala , Badri Narayanan

We use density-functional theory calculations to explore the magnetic properties of perovskite rare-earth nickelates, $\mathcal{R}$NiO$_3$, by constructing microscopic magnetic models containing all relevant exchange interactions via…

Materials Science · Physics 2021-08-04 Danis I. Badrtdinov , Alexander Hampel , Cyrus E. Dreyer

Rare-earth nickelates R$^{3+}$Ni$^{3+}$O$_3$ (R=Lu-Pr, Y) show a striking metal-insulator transition in their bulk phase whose temperature can be tuned by the rare-earth radius. These compounds are also the parent phases of the newly…

Materials Science · Physics 2021-07-21 Lucia Iglesias , Manuel Bibes , Julien Varignon

Rare-earth nickelates exhibit a metal-insulator transition accompanied by a structural distortion that breaks the symmetry between formerly equivalent Ni sites. The quantitative theoretical description of this coupled electronic-structural…

Strongly Correlated Electrons · Physics 2019-02-07 Alexander Hampel , Peitao Liu , Cesare Franchini , Claude Ederer

For most metals, increasing temperature (T) or disorder will quicken electron scattering. This hypothesis informs the Drude model of electronic conductivity. However, for so-called bad metals this predicts scattering times so short as to…

Strongly Correlated Electrons · Physics 2015-06-17 R. Jaramillo , Sieu D. Ha , D. M. Silevitch , Shriram Ramanathan

The material class of rare earth nickelates with high Ni$^{3+}$ oxidation state is generating continued interest due to the occurrence of a metal-insulator transition with charge order and the appearance of non-collinear magnetic phases…

Strongly Correlated Electrons · Physics 2018-01-11 H. Guo , Z. W. Li , L. Zhao , Z. Hu , C. F. Chang , C. -Y. Kuo , W. Schmidt , A. Piovano , T. W. Pi , O. Sobolev , D. I. Khomskii , L. H. Tjeng , A. C. Komarek

The origin of simultaneous electronic, structural and magnetic transitions in bulk rare-earth nickelates ($RE$NiO$_3$) remains puzzling with multiple conflicting reports on the nature of these entangled phase transitions. Heterostructure…

Strongly Correlated Electrons · Physics 2019-07-15 Shashank Kumar Ojha , Sujay Ray , Tanmoy Das , S. Middey , Sagar Sarkar , Priya Mahadevan , Zhen Wang , Yimei Zhu , Xiaoran Liu , M. Kareev , J. Chakhalian

The discovery of superconductivity in hole-doped infinite layer nickelates, RNiO2 (R = Nd, Pr, La) has garnered sustained interest in the field. A definitive picture of low-energy many-body states has not yet emerged. We provide new…

Strongly Correlated Electrons · Physics 2023-03-28 Gheorghe Lucian Pascut , Lucian Cosovanu , Kristjan Haule , Khandker F. Quader

Nickelates are a rich class of materials, ranging from insulating magnets to superconductors. But for stoichiometric materials, insulating behavior is the norm, as for most late transition metal oxides. Notable exceptions are the 3D…

In transition metal oxides electron-electron interaction and lattice degree of freedom are basic ingredients of emergent phenomena, such as metal-to-insulator transition (MIT) and superconductivity. Perovskite rare-earth nickelates are…

Motivated by recent Fermi surface and transport measurements on LaNiO3, we study the Mott Metal-Insulator transitions of perovskite nickelates, with the chemical formula RNiO3, where R is a rare-earth ion. We introduce and study a minimal…

Strongly Correlated Electrons · Physics 2015-05-28 SungBin Lee , Ru Chen , Leon Balents

Rare-earth nickelates form an intriguing series of correlated perovskite oxides. Apart from LaNiO3, they exhibit on cooling a sharp metal-insulator electronic phase transition, a concurrent structural phase transition and a magnetic phase…

Materials Science · Physics 2018-02-07 Alain Mercy , Jordan Bieder , Jorge Iniguez , Philippe Ghosez

The metal-insulator transition (MIT) in rare-earth nickelates exemplifies the intricate interplay between electronic correlations and lattice dynamics in quantum materials. This work focuses on SmNiO$_3$ as a prototypical system, employing…

Materials Science · Physics 2025-03-12 Guoyong Shi , Fenglin Deng , Ri He , Dachuan Chen , Xuejiao Chen , Peiheng Jiang , Zhicheng Zhong
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