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Anisotropies in electronic transportations conventionally originate from the nature of low symmetries in crystal structures, and were not anticipated for perovskite oxides, the crystal asymmetricity of which is far below, e.g. van der Waals…

Materials Science · Physics 2019-10-22 Jikun Chen , Haiyang Hu , Fanqi Meng , Takeaki Yajima , Lixia Yang , Binghui Ge , Xinyou Ke , Jiaou Wang , Yong Jiang , Nuofu Chen

Although discovery in hydrogen induced electronic transition within perovskite family of rare-earth nickelate (ReNiO3) opens up a new paradigm in exploring both the new materials functionality and device applications, the existing research…

Materials Science · Physics 2022-03-14 Yi Bian , Haiyan Li , Fengbo Yan , Haifan Li , Jiaou Wang , Hao Zhang , Yong Jiang , Nuofu Chen , Jikun Chen

We present a novel heterostructured approach to disentangle the mechanism of electrical transport of the strongly correlated PrNiO3, by placing the nickelate under the photoconductor CdS. This enables the injection of carriers into PrNiO3…

Strongly Correlated Electrons · Physics 2023-12-11 Henry Navarro , Sarmistha Das , Felipe Torres , Rourav Basak , Erbin Qiu , Nicolas M. Vargas , Pavel Lapa , Ivan K. Schuller , Alex Frano

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 relative role of electron-electron and electron-lattice interactions in driving the metal-insulator transition in perovskite nickelates opens a rare window into the non-trivial interplay of the two important degrees of freedom in…

Realization of novel functionalities by tuning magnetic interactions in rare earth perovskite oxide thin films opens up exciting technological prospects. Strain-induced tuning of magnetic interactions in rare earth cobaltates and nickelates…

The metal to insulator transition (MIT) in Mott-Hubbard systems is one of the most important discoveries in condensed matter physics, and results in abrupt orbital transitions from the insulating to metallic phases by elevating temperature…

Applied Physics · Physics 2019-04-02 Jikun Chen , Haiyang Hu , Takeaki Yajima , Jiaou Wang , Binghui Ge , Hongliang Dong , Yong Jiang , Nuofu Chen

The recent discovery of ambient-pressure superconductivity in thin-film bilayer nickelates opens new possibilities for investigating electronic structures in this new class of high-transition temperature $T_C$ superconductors. Here, we…

Rare-earth nickelates are strongly correlated oxides displaying a metal-to-insulator transition at a temperature tunable by the rare-earth ionic radius. In PrNiO$_3$ and NdNiO$_3$, the transition is very sharp and shows an hysteretic…

Materials Science · Physics 2017-09-04 Daniele Preziosi , Anke Sander , Agnès Barthélémy , Manuel Bibes

CsSnI3 perovskite is a promising thin-film semiconductor with high intrinsic conductivity for various device applications (thermoelectric, photovoltaics, etc.). Stoichiometric CsSnI3 owns high-density of defects and structural imperfections…

Transition metal based oxide heterostructures exhibit diverse emergent phenomena e.g. two dimensional electron gas, superconductivity, non-collinear magnetic phase, ferroelectricity, polar vortices, topological Hall effect etc., which are…

Strongly Correlated Electrons · Physics 2020-04-08 S. Middey , Ranjan Kumar Patel , D. Meyers , P. Shafer , M. Kareev , J. W. Freeland , J. -W. Kim , P. J. Ryan , J. Chakhalian

Although rare earth nickelates (ReNiO3) exhibit abundant electronic phases and widely adjustable metal to insulator electronic transition properties, their practical electronic applications are largely impeded by their intrinsic meta…

Materials Science · Physics 2021-11-29 Fengbo Yan , Zhishan Mi , Jinhao Chen , Haiyang Hu , Lei Gao , Jiaou Wang , Nuofu Chen , Yong Jiang , Lijie Qiao , Jikun Chen

Carrier density is one of the key controlling factors of material properties, particularly in controlling the essential correlations in strongly correlated materials. Typically, carrier density is externally tuned by doping or gating and…

Strongly Correlated Electrons · Physics 2023-11-01 Ruoshi Jiang , Zi-Jian Lang , Tom Berlijn , Wei Ku

The recent discovery of ambient-pressure superconductivity with $T_c$ above 40 K in La$_3$Ni$_2$O$_7$ thin films represents a significant advance in the field of nickelate superconductor. Motivated by the experimental reports, here we study…

Superconductivity · Physics 2026-02-19 Yuxun Zhong , Wéi Wú , Dao-Xin Yao

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 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

The rare-earth nickelates (RNiO3) exhibit interesting phenomena such as unusual antiferromagnetic order at wavevector q = (1/2, 0, 1/2) and a tunable insulator-metal transition that are subjects of active research. Here we present…

Perovskite oxides are promising for energy and quantum technologies, but wide-gap hosts such as NaAlO3 suffer from deep-UV absorption and limited carrier transport. Using first-principles GGA+U+SOC calculations, we investigate Eu3+-, Gd3+-,…

Materials Science · Physics 2025-10-10 Muhammad Imran , Sikander Azam , Qaiser Rafiq , Amin Ur Rahman

High-temperature superconductivity (HTSC) remains one of the most challenging and fascinating mysteries in condensed matter physics. Recently, superconductivity with transition temperature exceeding liquid-nitrogen temperature is discovered…

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
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