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相关论文: Dilemma in strongly correlated materials: Hund's m…

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Strong electronic correlations are often associated with the proximity of a Mott insulating state. In recent years however, it has become increasingly clear that the Hund's rule coupling (intra-atomic exchange) is responsible for strong…

强关联电子 · 物理学 2013-03-20 Antoine Georges , Luca de' Medici , Jernej Mravlje

To clarify the nature of correlations in Hund metals and its relationship with Mott physics we analyze the electronic correlations in multiorbital systems as a function of intraorbital interaction U, Hund's coupling JH and electronic…

强关联电子 · 物理学 2015-09-02 L. Fanfarillo , E. Bascones

Hund's coupling plays a decisive role in shaping electron correlations of multi-orbital systems, giving rise to a class of materials--Hund's metals--that combine local-moment physics with metallic transport. Here we derive an effective…

强关联电子 · 物理学 2025-11-27 Johan Carlström

We study the interplay between electron-electron interaction and a Jahn-Teller phonon coupling in a two-orbital Hubbard model. We demonstrate that the e-ph interaction coexists with the Mott localization driven by the Hubbard repulsion U,…

强关联电子 · 物理学 2025-08-19 A. Scazzola , A. Amaricci , M. Capone

Physical properties of multi-orbital materials depend not only on the strength of the effective interactions among the valence electrons but also on their type. Strong correlations are caused by either Mott physics that captures the Coulomb…

We show how in multi-band materials, the Hund's coupling plays a crucial role in tuning the degree of electronic correlation. While in half-filled systems it enhances the correlations, in all other cases it pushes the boundary for the Mott…

强关联电子 · 物理学 2011-06-02 Luca de' Medici

We study the doping-driven Mott metal-insulator transition for multi-orbital Hubbard models with Hund's exchange coupling at finite temperatures. As in the single-orbital Hubbard model, the transition is of first-order within dynamical mean…

强关联电子 · 物理学 2019-08-05 Jakob Steinbauer , Luca de' Medici , Silke Biermann

Multiorbital Hubbard models host strongly correlated 'Hund's metals' even for interactions much stronger than the bandwidth. We characterize this interaction-resilient metal as a mixed-valence state. In particular it can be pictured as a…

强关联电子 · 物理学 2019-05-09 Aldo Isidori , Maja Berovic , Laura Fanfarillo , Luca de' Medici , Michele Fabrizio , Massimo Capone

Multiorbital systems such as the iron-based superconductors provide a new avenue to attack the longstanding problem of superconductivity in strongly correlated systems. In this work we study the superconductivity driven by a generic bosonic…

超导电性 · 物理学 2020-10-28 Laura Fanfarillo , Angelo Valli , Massimo Capone

We study the interplay between Mott physics, driven by Coulomb repulsion U, and Hund physics, driven by Hund's coupling J, for a minimal model for Hund metals, the orbital-symmetric three-band Hubbard-Hund model (3HHM) for a lattice filling…

强关联电子 · 物理学 2021-09-09 K. M. Stadler , G. Kotliar , S. -S. B. Lee , A. Weichselbaum , J. von Delft

The varying metallic antiferromagnetic correlations observed in iron-based superconductors are unified in a model consisting of both itinerant electrons and localized spins. The decisive factor is found to be the sensitive competition…

超导电性 · 物理学 2010-09-03 Wei-Guo Yin , Chi-Cheng Lee , Wei Ku

We show that in multi-band metals the correlations are strongly affected by the Hund's rule coupling, which depending on the filling promotes metallic, insulating or bad-metallic behavior. The quasiparticle coherence and the proximity to a…

强关联电子 · 物理学 2015-03-19 Luca de' Medici , Jernej Mravlje , Antoine Georges

Hund metals are multi-orbital systems with moderate Coulomb interaction, $U$, and sizeable Hund's rule coupling, $J<U$, that aligns the spins in different orbitals. They show strong correlation effects, like very low Fermi-liquid coherence…

强关联电子 · 物理学 2018-12-27 Katharina M. Stadler , Gabriel Kotliar , Andreas Weichselbaum , Jan von Delft

We analyze multi-orbital Hubbard models describing Hund's metals, focusing on the ubiquitous occurrence of a charge instability, signalled by a divergent/negative electronic compressibility, in a range of doping from the half-filled Mott…

Motivated by the recent discovery of superconductivity in infinite-layer nickelates RE$_{1-\delta}$Sr$_\delta$NiO$_2$ (RE$=$Nd, Pr), we study the role of Hund's coupling $J$ in a quarter-filled two-orbital Hubbard model which has been on…

强关联电子 · 物理学 2021-05-18 Siheon Ryee , Myung Joon Han , Sangkook Choi

We propose a way to identify strongly Hund-correlated materials by unveiling a key signature of Hund correlations at the two-particle level. The defining feature is the {\it sign} of the response of the {\it frozen spin ratio} (the…

强关联电子 · 物理学 2023-08-28 Siheon Ryee , Sangkook Choi , Myung Joon Han

Competition of crystal field splitting and Hund's rule coupling in magnetic metal-insulator transitions of half-filled two-orbital Hubbard model is investigated by multi-orbital slave-boson mean field theory. We show that with the increase…

强关联电子 · 物理学 2015-03-19 Ya-Min Quan , Liang-Jian Zou , Dayong Liu , Hai-Qing Lin

Strong correlation effects caused by Hund's coupling have been actively studied during the past decade. Hund's metal, strongly correlated while far from the Mott insulating limit, was studied as a representative example. However, recently,…

强关联电子 · 物理学 2024-04-01 Ina Park , Bo Gyu Jang , Dong Wook Kim , Ji Hoon Shim , Gabriel Kotliar

The coupling of electronic degrees of freedom in materials to create hybridized functionalities is a holy grail of modern condensed matter physics that may produce novel mechanisms of control. Correlated electron systems often exhibit…

Hund's pairing refers to Cooper pairing generated by onsite interactions that become attractive due to large Hund's exchange $J$. This is possible in multiorbital systems even when all local bare interactions are repulsive, since attraction…

超导电性 · 物理学 2022-09-13 Mercè Roig , Astrid T. Rømer , Andreas Kreisel , P. J. Hirschfeld , Brian M. Andersen
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