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Related papers: Orbital physics in transition metal compounds: new…

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A model calculation is presented with the aim to study the interplay between magnetic and structural transitions. The model consists of an orbitally doubly degenerate conduction band and a periodic array of local moments. The band electrons…

Strongly Correlated Electrons · Physics 2007-05-23 G. Gangadhar Reddy , A. Ramakanth , S. K. Ghatak , S. N. Behera , W. Nolting , T. Venkatappa Rao

We investigate the effects of magnetic fields on excitonic condensation in the extended Falicov-Kimball model, which is a spinless two-orbital Hubbard model with orbital splitting. In lattice systems under magnetic fields up to several tens…

Strongly Correlated Electrons · Physics 2025-04-16 Naoya Ohta , Joji Nasu

We study how the Mott metal-insulator transition (MIT) is affected when we have to deal with electrons with different angular momentum quantum numbers. For that purpose we apply ab-initio quantum-chemical methods to lithium rings in order…

Strongly Correlated Electrons · Physics 2009-11-10 Beate Paulus , Krzysztof Rosciszewski , Peter Fulde , Hermann Stoll

The topological semimetal YPtBi has attracted considerable attention, owing to its novel superconducting and normal state properties. A strong band inversion from spin-orbit coupling allows the existence of $j=3/2$ quasiparticles near the…

We consider the impact of orbital polarons in doped orbitally ordered systems on optical conductivity using the simplest generic model capturing the directional nature of either $t_{2g}$ (or $e_g$) orbital states in certain transition metal…

Strongly Correlated Electrons · Physics 2012-08-13 Piotr Wróbel , Robert Eder , Andrzej M. Oleś

Spin- or orbital-selective behaviours in correlated electron materials offer rich promise for spintronics or orbitronics phenomena and applications deriving from them. Strong local electronic Coulomb correlations might lead to an…

Strongly Correlated Electrons · Physics 2024-06-03 Evgeny A. Stepanov , Silke Biermann

Unusual metallic states involving breakdown of the standard Fermi-liquid picture of long-lived quasiparticles in well-defined band states emerge at low temperatures near correlation-driven Mott transitions. Prominent examples are…

Materials Science · Physics 2018-11-14 L. Craco , M. S. Laad , S. Leoni

Fundamental electronic principles underlying all transition metal compounds are the symmetry and filling of the $d$-electron orbitals and the influence of this filling on structural configurations and responses. Here we use a sensitive…

Although orbital degrees of freedom are a factor of fundamental importance in strongly correlated transition metal compounds, orbital correlations and dynamics remain very difficult to access, in particular by neutron scattering. Via a…

Strongly Correlated Electrons · Physics 2015-03-20 Pasquale Marra , Krzysztof Wohlfeld , Jeroen van den Brink

Vanadium spinels (ZnV_2O_4, MgV_2O_4, and CdV_2O_4) exhibit a sequence of structural and magnetic phase transitions, reflecting the interplay of lattice, orbital, and spin degrees of freedom. We offer a theoretical model taking into account…

Strongly Correlated Electrons · Physics 2007-05-23 O. Tchernyshyov

The electronic properties of Mott insulators realized in (111) bilayers of perovskite transition-metal oxides are studied. The low-energy effective Hamiltonians for such Mott insulators are derived in the presence of a strong spin-orbit…

Strongly Correlated Electrons · Physics 2015-06-11 Satoshi Okamoto

Electron correlations play a central role in iron-based superconductors. In these systems, multiple Fe $3d$-orbitals are active in the low-energy physics, and they are not all degenerate. For these reasons, the role of orbital-selective…

Superconductivity · Physics 2021-05-06 Rong Yu , Haoyu Hu , Emilian M. Nica , Jian-Xin Zhu , Qimiao Si

We study a two-dimensional single band Hubbard Hamiltonian with antisymmetric spin-orbit coupling. We argue that this is the minimal model to understand the electronic properties of locally non-centrosymmetric transition-metal (TM) oxides…

Strongly Correlated Electrons · Physics 2021-04-30 Mehdi Biderang , Alireza Akbari , Jesko Sirker

The electronic properties of quarter-filled organic materials showing spin-Peierls transition are investigated theoretically. By studying the one-dimensional extended Peierls-Hubbard model analytically as well as numerically, we find that…

Strongly Correlated Electrons · Physics 2007-05-23 Makoto Kuwabara , Hitoshi Seo , Masao Ogata

We consider the superstructures, which can be formed in spinels containing on B-sites the transition-metal ions with partially filled t2g levels. We show that, when such systems are close to itinerant state (e.g. have an insulator-metal…

Strongly Correlated Electrons · Physics 2009-11-10 D. I. Khomskii , T. Mizokawa

We investigate the collective behavior of orbital angular momentum in the spin ferromagnetic state of a Mott insulator with $t_{2g}$ orbital degeneracy. The frustrated nature of the interactions leads to an infinite degeneracy of classical…

Strongly Correlated Electrons · Physics 2009-11-07 Giniyat Khaliullin , Satoshi Okamoto

In experiments and applications usually the spin magnetic moment of magnons is considered. In this Paper we identify an additional degree of freedom of magnons: an \emph{orbital} magnetic moment brought about by spin-orbit coupling.Our…

Strongly Correlated Electrons · Physics 2020-09-16 Robin R. Neumann , Alexander Mook , Jürgen Henk , Ingrid Mertig

In recent years, orbitronic effects have attracted growing attention as complementary counterparts to the well-established spintronic phenomena. In this work, we demonstrate that monolayers of transition metal dichalcogenides provide an…

Mesoscale and Nanoscale Physics · Physics 2026-05-12 Saikat Saha , Arnab Bose , Sayantika Bhowal

The ground state of a double-exchange model for orbitally degenerate $e_g$ electrons with Jahn-Teller lattice coupling and weak disorder is found to be spatially inhomogeneous near half filling. Using a real space Monte-Carlo method we show…

Disordered Systems and Neural Networks · Physics 2009-11-11 Sanjeev Kumar , Arno P. Kampf , Pinaki Majumdar

The introduction of Peierls phases in open tight-binding chains without closed paths in either real or synthetic dimensions is understood to be physically inconsequential, as one assumes they can always be gauged away. Here, we show that…

Mesoscale and Nanoscale Physics · Physics 2024-09-30 Anselmo M. Marques