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An effective two-dimensional two-band model for infinite-layer nickelates consists of bands obtained from $d_{x^2-y^2}$ and $s$--like orbitals. We investigate whether it could be mapped onto a single-band Hubbard model and the filling of…

强关联电子 · 物理学 2023-04-12 Tharathep Plienbumrung , Maria Daghofer , Michael T. Schmid , Andrzej M. Oleś

The pairing symmetry in infinite-layer nickelate superconductors has been an intriguing problem under heated debates. In this work, we study a two-orbital Hubbard model with one strongly correlated $3d$ orbital and one more itinerant $5d$…

超导电性 · 物理学 2023-10-20 Zhihui Luo , Dao-Xin Yao , Wéi Wú

The recent discovery of superconductivity in infinite-layer nickelates has drawn considerable attention; however, a consensus on the fundamental building blocks and common ingredients necessary to understand and describe their ground states…

强关联电子 · 物理学 2023-12-07 Cheng Peng , Hong-Chen Jiang , Brian Moritz , Thomas P. Devereaux , Chunjing Jia

Motivated by the recent realization of the infinite-layer nickelate superconductivity (SC), we quantitatively investigate a two-orbital $d$-$s$ model by dynamic cluster quantum Monte Carlo calculations. Focusing on the impact of…

超导电性 · 物理学 2022-02-01 Mi Jiang

We report a determinant quantum Monte Carlo study of a two-band model, inspired by infinite-layer nickelates, focusing on the influence of interlayer hybridization between $3d_{x^2-y^2}$ orbitals derived from Ni (or Ni and O) in one layer…

强关联电子 · 物理学 2024-06-10 Fangze Liu , Cheng Peng , Edwin W. Huang , Brian Moritz , Chunjing Jia , Thomas P. Devereaux

We theoretically investigate the unconventional superconductivity in the newly discovered infinite-layer nickelates Nd$_{1-x}$Sr$_{x}$NiO$_{2}$ based on a two-band model. By analyzing the transport experiments, we propose that the doped…

超导电性 · 物理学 2020-12-08 Jun Chang , Jize Zhao , Yang Ding

The recently discovered superconductivity in Nd$_{1-x}$Sr$_x$NiO$_2$ provides a new opportunity for studying strongly correlated unconventional superconductivity. The single-hole Ni$^+$ ($3d^9$) configuration in the parent compound…

超导电性 · 物理学 2020-01-08 Lun-Hui Hu , Congjun Wu

Motivated by the high temperature superconductivity observed in the bilayer nickelate La$_3$Ni$_2$O$_7$ and the spectroscopic evidences of strong electron correlations in this compound, we address the role of its multiorbital electron…

超导电性 · 物理学 2024-12-31 Zhiguang Liao , Yiming Wang , Lei Chen , Guijing Duan , Rong Yu , Qimiao Si

Following the discovery of superconductivity in the cuprates and the seminal work by Anderson, the theoretical efforts to understand high-temperature superconductivity have been focusing to a large extent on a simple model: the one-band…

超导电性 · 物理学 2020-08-25 Motoharu Kitatani , Liang Si , Oleg Janson , Ryotaro Arita , Zhicheng Zhong , Karsten Held

After being expected as a promising analogue to cuprates for decades, superconductivity was recently discovered in infinite-layer nickelates, providing new opportunities to explore mechanisms of high-temperature superconductivity. However,…

In this paper we investigate the electronic and superconducting properties in nickelate compounds of NiO2 through Perturbative Density Functional Theory (P-DFT) and multi-band BCS theory. We consider three different cases of study (i) the…

超导电性 · 物理学 2021-12-16 Julian Faundez , C. A. Aguirre , S. G. Magalhães , J. Barba-Ortega

The recent observation of superconductivity in Nd$_{0.8}$Sr$_{0.2}$NiO$_2$ has raised fundamental questions about the hierarchy of the underlying electronic structure. Calculations suggest that this system falls in the Mott-Hubbard regime,…

Building upon the recent progress on the intriguing underlying physics for the newly discovered infinite-layer nickelates, in this article we review an examination of valence charge and spin excitations via multi-orbital Hubbard models as…

超导电性 · 物理学 2022-04-14 Emily M. Been , Kuan H. Hsu , Yi Hu , Brian Moritz , Yi Cui , Chunjing Jia , Thomas P. Devereaux

We review the electronic structure of nickelate superconductors with and without effects of electronic correlations. As a minimal model we identify the one-band Hubbard model for the Ni 3$d_{x^2-y^2}$ orbital plus a pocket around the…

We theoretically propose a possibility of realizing high $T_c$ superconductivity having $s\pm$-wave symmetry in the heavily hole-doped infinite layer nickelates La$_{1-x}$Sr$_x$NiO$_2$. We consider situations where the original $P4/mmm$…

超导电性 · 物理学 2026-04-27 Hirofumi Sakakibara , Ryota Mizuno , Masayuki Ochi , Hidetomo Usui , Kazuhiko Kuroki

We present an effective two-band model for infinite-layer nickelates NdNiO$_2$ that consisting of a $d$ band centered at Ni site and an interstitial $s$-like band centered at Nd site. To the large extent of the wave functions, we find…

强关联电子 · 物理学 2025-05-21 Tharathep Plienbumrung , Jean-Baptiste Morée , Andrzej M. Oleś , Maria Daghofer

The discovery of superconducting nickelates reignited hope for elucidating the high-$T_{\textrm{c}}$ superconductivity mechanism in the isostructural cuprates. While in the cuprates, the superconducting gap opens up on a single-band of the…

强关联电子 · 物理学 2022-08-09 Byungkyun Kang , Hyunsoo Kim , Qiang Zhu , Chul Hong Park

Since the discovery of superconductivity in infinite-layer nickelates RNiO$_2$ (R=La, Pr, Nd), great research efforts have been paid to unveil its underlying superconducting mechanism. However, the physical origin of the intriguing…

强关联电子 · 物理学 2022-07-20 T. Y. Xie , Z. Liu , Chao Cao , Z. F. Wang , J. L. Yang , W. Zhu

We study superconductivity and magnetism in bilayer nickelates from an itinerant perspective. Starting from a tight binding fit to recent ARPES measurements on compressively strained thin films, we incorporate the standard set of onsite…

Superconductivity in nickelates apparently takes place in two different Ni oxidation regimes, namely either for infinite-layer-type compounds close to Ni$^{+}$, or for Ruddlesden-Popper materials close to Ni$^{2+}$. The reduced…

强关联电子 · 物理学 2025-12-12 Frank Lechermann , Steffen Bötzel , Ilya M. Eremin
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