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We use first-principles calculations to find that in infinite-layer nickelates $R$NiO$_2$, the widely studied tetragonal $P4/mmm$ structure is only dynamically stable for early lanthanide elements $R$ = La-Sm. For late lanthanide elements…

Materials Science · Physics 2022-03-29 Chengliang Xia , Jiaxuan Wu , Yue Chen , Hanghui Chen

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

Layered nickelates are believed to exhibit superconductivity similar to that found in the cuprates. However, the precise crystal structure of the superconducting phase of the layered nickelates has not been fully clarified. Here, I use…

Superconductivity · Physics 2024-12-31 Alaska Subedi

Rare-earth nickelates RNiO$_2$ adopting an infinite-layer phase show superconductivity once La, Pr or Nd are substituted by a divalent cation. Either in the pristine or doped form, these materials are reported to adopt a high symmetry,…

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

The quasi-skutterudite superconductors $A_3T_4$Sn$_{13}$ ($A$=Sr, Ca; $T$=Ir, Rh, Co) are highly tunable featuring a structural quantum critical point. We construct a temperature-lattice constant phase diagram for these isovalent compounds,…

The nature of the lattice instability connected to the structural transition and superconductivity of (Sr,Ca)$_3$Ir$_4$Sn$_{13}$ is not yet fully understood. In this work density functional theory (DFT) calculations of the phonon…

Superconductivity · Physics 2014-02-20 David A. Tompsett

We study a model for the metal-insulator (MI) transition in the rare-earth nickelates RNiO$_3$, based upon a negative charge transfer energy and coupling to a rock-salt like lattice distortion of the NiO$_6$ octahedra. Using exact…

Strongly Correlated Electrons · Physics 2014-03-12 Steve Johnston , Anamitra Mukherjee , Ilya Elfimov , Mona Berciu , George A. Sawatzky

The recent discovery of superconductivity in oxygen-reduced monovalent nickelates has raised a new platform for the study of unconventional superconductivity, with similarities and differences with the cuprate high temperature…

Superconductivity · Physics 2021-03-16 Emily Been , Wei-Sheng Lee , Harold Y. Hwang , Yi Cui , Jan Zaanen , Thomas Devereaux , Brian Moritz , Chunjing Jia

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 consequences of varying the rare-earth element in the superconducting infinite-layer nickelates have been much debated. Here we show striking differences in the magnitude and anisotropy of the superconducting upper critical field across…

The properties of AMO3 perovskite oxides, where M is a 3d transition metal, depend strongly on the level of covalency between the metal d and oxygen p orbitals. With their complex spin orders and metal-insulator transition, rare-earth…

Materials Science · Physics 2017-05-08 Julien Varignon , Mathieu N. Grisolia , Jorge Íñiguez , Agnès Barthélémy , Manuel Bibes

We present a theory describing the local electronic properties of the perovskite rare earth nickelates--materials which have negative charge transfer energies, strong O $2p$ -- Ni $3d$ covalence, and breathing mode lattice distortions at…

Strongly Correlated Electrons · Physics 2016-11-16 Robert J. Green , Maurits W. Haverkort , George A. Sawatzky

The metal-insulator transition (MIT) of bulk rare-earth nickelates is accompanied by a simultaneous charge ordering (CO) transition. We have investigated low-frequency resistance fluctuations (noise) across the MIT and magnetic transition…

Strongly Correlated Electrons · Physics 2019-09-05 Gopi Nath Daptary , Siddharth Kumar , M. Kareev , J. Chakhalian , Aveek Bid , S. Middey

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

Trilayer nickelates are a rich class of materials exhibiting diverse correlated phenomena, including superconductivity, density wave transitions, non-Fermi liquid behavior along with an unusual metal-to-metal transition around T* ~ 150 K.…

Strongly Correlated Electrons · Physics 2025-12-04 Sonia Deswal , Deepu Kumar , Dibyata Rout , Surjeet Singh , Pradeep Kumar

The search for oxide materials with physical properties similar to the cuprate high Tc superconductors, but based on alternative transition metals such as nickel, has grown and evolved over time. The recent discovery of superconductivity in…

The strong structure-property coupling in rare-earth nickelates has spurred the realization of new quantum phases in rapid succession. Recently, topotactic transformations have provided a new platform for the controlled creation of oxygen…

The fundamental properties of infinite-layer rare-earth nickelates (RNiO2) are carefully revisited and compared with those of CaCuO2 and RNiO3 perovskites. Combining first-principles and finite-temperature second-principles calculations, we…

Materials Science · Physics 2022-01-04 Yajun Zhang , Jingtong Zhang , Xu He , Jie Wang , Philippe Ghosez

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…

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