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We explore the intriguing topological itinerant magnet MgMn$_6$Sn$_6$, characterized by bilayer kagome Mn layers encasing a hexagonal Sn layer. Using \textit{ab initio} Density functional theory and Dynamical mean-field theory calculations,…

Strongly Correlated Electrons · Physics 2024-08-06 Jyotirmoy Sau , Hrishit Banerjee , Sourabh Saha , Nitesh Kumar , Manoranjan Kumar

We report a systematic study of Sm valence in the prototypical intermediate valence compound SmB$_6$. Sm mean valence, $v_{\rm Sm}$, was measured by X-ray absorption spectroscopy as functions of pressure ($1<P<13$ GPa) and temperature…

Strongly Correlated Electrons · Physics 2018-05-09 N. Emi , N. Kawamura , M. Mizumaki , T. Koyama , N. Ishimatsu , G. Pristáš , T. Kagayama , K. Shimizu , Y. Osanai , F. Iga , T. Mito

Magnetic topological phases of quantum matter are an emerging frontier in physics and material science. Along these lines, several kagome magnets have appeared as the most promising platforms. Here, we explore magnetic correlations in the…

The mixed-valence compound SmB6 with partially filled samarium 4f flat bands hybridizing with 5d conduction bands is a paramount example of a correlated topological heavy-fermion system. In this study we revisit the topology of SmB6 with…

Strongly Correlated Electrons · Physics 2024-09-04 Mikel Iraola , Iñigo Robredo , TItus Neupert , Juan L. Mañes , Roser Valentí , Maia G. Vergniory

The interplay between magnetism and topological band structure offers extraordinary opportunities to realize rich exotic magnetic topological phases such as axion insulators, Weyl semimetals, and quantum anomalous Hall insulators, which…

Strongly Correlated Electrons · Physics 2021-09-28 Hao Su , Xianbiao Shi , Jian Yuan , Xin Zhang , Xia Wang , Na Yu , Zhiqiang Zou , Weiwei Zhao , Jianpeng Liu , Yanfeng Guo

Exotic quantum phenomena often emerge near an electronic delocalization transition (EDT) from an antiferromagnetic insulating phase to a strongly correlated metallic state under pressure. We report the pressure-induced structural and…

Strongly Correlated Electrons · Physics 2026-03-13 Matt Boswell , Antonio M. dos Santos , Mingyu Xu , Madalynn Marshall , Su-Yang Xu , Weiwei Xie

The possibility of selecting magnetic space groups by orienting the magnetization direction or tuning magnetic orders offers a vast playground for engineering symmetry protected topological phases in magnetic materials. In this work, we…

Mesoscale and Nanoscale Physics · Physics 2024-11-11 Ilyoun Na , Marc Vila , Sinéad M. Griffin

In contrast to magnetic order formed by electrons' dipolar moments, ordering phenomena associated with higher-order multipoles (quadrupoles, octupoles, etc.) are more difficult to characterize because of the limited choice of experimental…

SmB6 is a promising candidate material that promises to elucidate the connection between strong correlations and topological electronic states, which is a major challenge in condensed matter physics. The electron correlations are…

The interplay between strong electron correlation and band topology is at the forefront of condensed matter research. As a direct consequence of correlation, magnetism enriches topological phases and also has promising functional…

Exploration of the novel relationship between magnetic order and topological semimetals has received enormous interest in a wide range of both fundamental and applied research. Here we predict that soft ferromagnetic (FM) material EuB6 can…

Materials Science · Physics 2020-02-26 Simin Nie , Yan Sun , Fritz B. Prinz , Zhijun Wang , Hongming Weng , Zhong Fang , Xi Dai

The co-occurrence of phase transitions with local and global order parameters, such as the entangled magnetization and topological invariant, is attractive but has been seldom realized experimentally. Here, by using high-pressure in-situ…

We report on the study of the response to high pressures of the electronic and magnetic properties of several Sm-based compounds, which span at ambient pressure the whole range of stable charge states between the divalent and the trivalent.…

Strongly Correlated Electrons · Physics 2009-11-10 A. Barla , J. -P. Sanchez , J. Derr , B. Salce , G. Lapertot , J. Flouquet , B. P. Doyle , O. Leupold , R. Rueffer , M. M. Abd-Elmeguid , R. Lengsdorf

The intermediate valent systems TmSe and SmB6 have been investigated up to 16 and 18 GPa by ac microcalorimetry with a pressure (p) tuning realized in situ at low temperature. For TmSe, the transition from an antiferromagnetic insulator for…

Strongly Correlated Electrons · Physics 2009-11-11 J. Derr , G. Knebel , G. Lapertot , B. Salce , M-A. Measson , J. Flouquet

$\textit{R}$Mn$_6$Sn$_6$ ($R=$~Y,~Gd$-$Lu) kagome metals are promising materials hosting flat electronic bands and Dirac points that interact with magnetism. The coupling between the two magnetic $R$ and Mn sublattices can drive complex…

Strongly Correlated Electrons · Physics 2025-02-17 Nil L , Thais Victa-Trevisan , R. J. McQueeney

We use the first principles and effective Hamiltonian methods to study the electronic structure and magnetic properties of a recently synthesized layered antiferromagnetic square net topological semimetal EuZnSb$_2$ [1]. The main message of…

Materials Science · Physics 2022-12-21 Niraj Aryal , Qiang Li , A. M. Tsvelik , Weiguo Yin

Based on the first-principles calculations and theoretical analysis, we investigate the electronic structures, topological phase transition (TPT) and topological properties of layered magnetic compound MnSb2Te4. It has the similar crystal…

Materials Science · Physics 2020-08-12 Liqin Zhou , Zhiyun Tan , Dayu Yan , Zhong Fang , Youguo Shi , Hongming Weng

Topological insulators give rise to exquisite electronic properties due to their spin-momentum locked Dirac-cone-like band structure. Recently, it has been suggested that the required opposite parities between valence and conduction band…

Strongly Correlated Electrons · Physics 2017-01-12 Lin Jiao , Sahana Rößler , D. J. Kim , L. H. Tjeng , Z. Fisk , F. Steglich , S. Wirth

Recent discovery of the time reversal symmetry breaking magnetic Weyl semimetals has created a huge surge of activities in the field of quantum topological materials. In this work, we have studied systematically the ground state magnetic…

Materials Science · Physics 2024-10-04 Amarjyoti Choudhury , N. Mohanta , T. Maitra

The interplay between magnetism and electronic topology offers a powerful route to realizing emergent quantum phases. Here, we show that Zn substitution in the layered compound EuMn$_2$Sb$_2$ drives a transition from a C-type…

Materials Science · Physics 2026-04-29 Deep Sagar , Arti Kashyap
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