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Spin-orbit coupling (SOC) plays a crucial role in magnetic and electronic properties of 5$d$ iridates. In this paper we have experimentally investigated the structural and physical properties of a series of Ir-based double perovskite…

Strongly Correlated Electrons · Physics 2019-10-02 Abhisek Bandyopadhyay , I. Carlomagno , L. Simonelli , M. Moretti Sala , A. Efimenko , C. Meneghini , Sugata Ray

We compute the electronic structure, spin and charge state of Fe ions, and structural phase stability of paramagnetic CaFeO$_3$ under pressure using a fully self-consistent in charge density DFT+dynamical mean-field theory method. We show…

Strongly Correlated Electrons · Physics 2022-02-01 I. Leonov

Layered 5$d$ transition iridium oxides, Sr$_2$(Ir,Rh)O$_4$, are described as unconventional Mott insulators with strong spin-orbit coupling. The undoped compound, Sr$_2$IrO$_4$, is a nearly ideal two-dimensional pseudospin-$1/2$ Heisenberg…

Strongly Correlated Electrons · Physics 2017-05-02 Jaehong Jeong , Yvan Sidis , Alex Louat , Véronique Brouet , Philippe Bourges

Our single crystal study of the magneto-thermal and transport properties of the pyrochlore iridate Eu2Ir2O7 reveals a continuous phase transition from a paramagnetic metal to an antiferromagnetic insulator for a sample with stoichiometry…

Strongly Correlated Electrons · Physics 2015-06-04 Jun J. Ishikawa , Eoin C. T. O'Farrell , Satoru Nakatsuji

V2O3 is the prototype system for the Mott transition, one of the most fundamental phenomena of electronic correlation. Temperature, doping or pressure induce a metal to insulator transition (MIT) between a paramagnetic metal (PM) and a…

Mott insulators have surprised us many times by hosting new and diverse quantum phenomena when the frozen electrons are perturbed by various stimuli. Superconductivity, metal-insulator transition, and colossal magnetoresistance induced by…

Strongly Correlated Electrons · Physics 2017-12-08 Chanchal Sow , Shingo Yonezawa , Sota Kitamura , Takashi Oka , Kazuhiko Kuroki , Fumihiko Nakamura , Yoshiteru Maeno

We report the first principle investigations on the structural, electronic, magnetic and ferroelectric properties of a Pb free double perovskite multiferroic Bi2NiTiO6 using density functional theory within the general gradient…

Computational Physics · Physics 2018-05-09 Lokanath Patra , P. Ravindran

As a hallmark of electronic correlation, spin-charge interplay underlies many emergent phenomena in doped Mott insulators, such as high-temperature superconductivity, whereas the half-filled parent state is usually electronically frozen…

The electrical control of a material's conductivity is at the heart of modern electronics. Conventionally, this control is achieved by tuning the density of mobile charge carriers. A completely different approach is possible in Mott…

Mott-insulating transition metal oxides containing $t_{2g}^4$ ions with strong spin-orbit coupling were recently demonstrated to display unusual magnetism due to a dynamical mixing of the low-energy multiplet states via exchange processes.…

Strongly Correlated Electrons · Physics 2025-10-07 Jiří Chaloupka

According to topological quantum chemistry, a class of electronic materials have been called obstructed atomic insulators (OAIs), in which a portion of valence electrons necessarily have their centers located on some empty…

Materials Science · Physics 2022-05-05 Lei Wang , Yi Jiang , Jiaxi Liu , Shuai Zhang , Jiangxu Li , Peitao Liu , Yan Sun , Hongming Weng , Xing-Qiu Chen

We present a muon spin relaxation study of the Mott transition in BaCoS_2 using two independent control parameters: (i) pressure p to tune the electronic bandwidth and (ii) Ni-substitution x on the Co site to tune the band filling. For both…

We present results of combined density functional theory plus dynamical mean-field theory (DFT+DMFT) calculations, which show that the Mott insulator LaTiO3 undergoes an insulator-to-metal transition under compressive epitaxial strain of…

Strongly Correlated Electrons · Physics 2014-04-17 Krzysztof Dymkowski , Claude Ederer

Frequency shifts and nuclear relaxations of 13C NMR of the metal-insulator alternating material, (Me-3,5-DIP)[Ni(dmit)2]2, are presented. The NMR absorption lines originating from metallic and insulating layers are well resolved, which…

Strongly Correlated Electrons · Physics 2009-11-13 Shigeki Fujiyama , A. Shitade , K. Kanoda , Y. Kosaka , H. M. Yamamoto , R. Kato

Altermagnets are a novel class of materials that combine antiferromagnetic spin ordering with non-relativistic spin splitting (NRSS) in their band structure, making them promising candidates for spintronics applications without requiring…

Strongly Correlated Electrons · Physics 2025-08-12 Niklas Sicheler , Roberto Raimondi , Giorgio Sangiovanni , Lorenzo Del Re

We report a systematical structural, transport and magnetic study of Ca or Ba doped Sr2IrO4single crystals. Isoelectronically substituting Ca2+ (up to 15%) or Ba2+ (up to 4%) ion for the Sr2+ ion provides no additional charge carriers but…

Strongly Correlated Electrons · Physics 2018-05-04 H. D. Zhao , J. Terzic , H. Zheng , Y. F. Ni , Y. Zhang , Feng Ye , P. Schlottmann , G. Cao

The insulator-metal transition in Mott insulators, known as the Mott transition, is usually accompanied with various novel quantum phenomena, such as unconventional superconductivity, non-Fermi liquid behavior and colossal…

Strongly Correlated Electrons · Physics 2023-04-21 Ye Yang , Fanghang Yu , Xikai Wen , Zhigang Gui , Yuqing Zhang , Fangyang Zhan , Rui Wang , Jianjun Ying , Xianhui Chen

Spin-orbit (SO) Mott insulators are regarded as a new paradigm of magnetic materials, whose properties are largely influenced by SO coupling and featured by highly anisotropic bond-dependent exchange interactions between the spin-orbital…

Strongly Correlated Electrons · Physics 2018-11-14 S. A. Nikolaev , I. V. Solovyev , A. N. Ignatenko , V. Yu. Irkhin , S. V. Streltsov

We study Na2IrO3 by ARPES, optics, and band structure calculations in the local-density approximation (LDA). The weak dispersion of the Ir 5d-t2g manifold highlights the importance of structural distortions and spin-orbit coupling (SO) in…

Materials with a 5d4 electronic configuration are generally considered to have a nonmagnetic ground state (J=0). Interestingly, Sr2YIrO6 (Ir5+ having 5d4 electronic configuration) was recently reported to exhibit long-range magnetic order…

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