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Related papers: Electronic structure of the pyrochlore metals Cd2O…

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By means of the first-principles calculations, we have studied in details the structural, elastic and electronic properties of the new tetragonal CaBe2Ge2-type 5.2K superconductor SrPt2As2 in comparison with two hypothetical SrPt2As2…

Superconductivity · Physics 2011-01-28 I. R. Shein , A. L. Ivanovskii

In transition-metal compounds, the transition-metal d electrons play an important role in their physical properties; however, the effects of the electron correlation between the ligand p electrons have not been clear yet. In this Letter,…

Cd2Os2O7 shows a peculiar metal-insulator transition at 227 K with magnetic ordering in a frustrated pyrochlore lattice, but its magnetic structure in the ordered state and the transition origin are yet uncovered. We observed a commensurate…

Strongly Correlated Electrons · Physics 2012-06-20 J. Yamaura , K. Ohgushi , H. Ohsumi , T. Hasegawa , I. Yamauchi , K. Sugimoto , S. Takeshita , A. Tokuda , M. Takata , M. Udagawa , M. Takigawa , H. Harima , T. Arima , Z. Hiroi

In this review, we present recent works on materials whose common point is the presence of electronic bands of very low dispersion, called "flat bands", which are due to specific atomic order effects without electron interactions. These…

Pyrochlore oxides with chemical formula of A2B2O7 exhibit a diverse range of electronic properties as a representative family of quantum materials. These properties mostly stem from strong electron correlations at the transition metal B…

Strongly Correlated Electrons · Physics 2025-04-25 Yoshinori Tokura , Yukitoshi Motome , Kentaro Ueda

The pyrochlore lattice materials can exhibit geometrical frustration, while the related many-body electronic states remain elusive. In this work, we performed scanning tunneling microscopy measurements on the pyrochlore superconductor CsBi2…

Using density functional theory we investigate the lattice instability and electronic structure of recently discovered ferroelectric metal LiOsO$_3$. We show that the ferroelectric-like lattice instability is related to the Li-O distortion…

Materials Science · Physics 2015-03-19 Gianluca Giovannetti , Massimo Capone

Strong electron interactions can drive metallic systems toward a variety of well-known symmetry-broken phases, but the instabilities of correlated metals with strong spin-orbit coupling have only recently begun to be explored. We uncovered…

Strongly Correlated Electrons · Physics 2017-04-26 J. W. Harter , Z. Y. Zhao , J. -Q. Yan , D. G. Mandrus , D. Hsieh

A heavy-fermion paramagnet UTe$_2$ has been a strong candidate for a spin-triplet superconductor. Experiments on UTe$_2$ under pressure have been vigorously conducted, and rich phase diagrams have been suggested. Multiple superconducting…

Strongly Correlated Electrons · Physics 2025-12-01 Makoto Shimizu , Youichi Yanase

Density functional calculations are used to investigate the electronic structure of two-dimensional 5d tantalum carbides with honeycomb-like lattice structures. We focus on changes in the low-energy bands near the Fermi level with…

Materials Science · Physics 2013-03-20 Nina J. Lane , Michel W. Barsoum , James M. Rondinelli

The kagome metals $A$V$_3$Sb$_5$ ($A=$ K, Cs, Rb) have become a fascinating materials platform following the discovery of many novel quantum states due to the interplay between electronic correlation, topology, and geometry. Understanding…

Strongly Correlated Electrons · Physics 2025-10-28 Keyu Zeng , Zhan Wang , Kun Jiang , Ziqiang Wang

This work presents a detailed study of the electronic structure, phonon dispersion, Z2 invariant calculation, and Fermi surface of the newly discovered kagome superconductor CsV3Sb5, using density functional theory (DFT). The phonon…

Strongly Correlated Electrons · Physics 2024-10-18 Shalika R. Bhandari , Mohd Zeeshan , Vivek Gusain , Keshav Shrestha , D. P. Rai

PdCrO$_2$ is material which has attracted interest due to the coexistence of metallic conductivity associated with itinerant Pd 4d electrons and antiferromagnetic order arising from localized Cr spins. A central issue is determining to what…

We report on the electronic structure of the perovskite oxide CaCrO3 using valence-band, core-level, and Cr 2p - 3d resonant photoemission spectroscopy (PES). Despite its antiferromagnetic order, a clear Fermi edge characteristic of a metal…

Strongly Correlated Electrons · Physics 2025-08-20 P. A. Bhobe , A. Chainani , M. Taguchi , R. Eguchi , M. Matsunami , T. Ohtsuki , K. Ishizaka , M. Okawa , M. Oura , Y. Senba , H. Ohashi , M. Isobe , Y. Ueda , S. Shin

Recently discovered heavy fermion CeRh$_{2}$As$_{2}$ compound crystallizes in the nonsymmorphic $P4/nmm$ symmetry, which enables the occurrence of topological protection. Experimental results show that this material exhibits unusual…

Two-dimensional (2D) materials may exhibit intriguing band structure features (e.g., Dirac points), that lay far away from the Fermi level. They are, thus, not usable in applications. The semiconducting 2D material PC6 has two Dirac cones…

Materials Science · Physics 2021-10-01 Maximilian A. Springer , Thomas Brumme , Agnieszka Kuc , Thomas Heine

We report the observation of an unusual behavior of highly extended 5d electrons in Y2Ir2O7 belonging to pyrochlore family of great current interest using high resolution photoemission spectroscopy. The experimental bulk spectra reveal an…

Strongly Correlated Electrons · Physics 2007-07-10 R. S. Singh , V. R. R. Medicherla , Kalobaran Maiti , E. V. Sampathkumaran

We use angle-resolved photoemission spectroscopy (ARPES) and density functional theory (DFT) calculations to study the electronic structure of CaFe$_2$As$_2$ in previously unexplored collapsed tetragonal (CT) phase. This unusual phase of…

The demonstration of superconductivity in nickelate analogues of high $T_c$ cuprates provides new perspectives on the physics of correlated electron materials. The degree to which the nickelate electronic structure is similar to that of…

Strongly Correlated Electrons · Physics 2020-10-02 Jonathan Karp , Antia S. Botana , Michael R. Norman , Hyowon Park , Manuel Zingl , Andrew Millis

Spin-filtered time-of-flight photoelectron momentum microscopy reveals a systematic variation of the band structure within a series of highly spin-polarized ferromagnetic Heusler compounds with increasing number of valence electrons…

Materials Science · Physics 2021-02-10 S. Chernov , C. Lidig , O. Fedchenko , M. Jourdan , G. Schönhense , H. J. Elmers