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Recent theoretical and experimental studies suggest that SmB$_6$ is the first topological Kondo insulator: A material in which the interaction between localized and itinerant electrons renders the bulk insulating at low temperature, while…

The rise of topology in condensed matter physics has generated strong interest in identifying novel quantum materials in which topological protection is driven by electronic correlations. Samarium hexaboride is a Kondo insulator for which…

Strongly correlated electron systems show many exotic properties such as unconventional superconductity, quantum criticality, and Kondo insulating behavior. In addition, the Kondo insulator SmB6 has been predicted theoretically to be a 3D…

Strongly Correlated Electrons · Physics 2014-03-26 D. J. Kim , J. Xia , Z. Fisk

Samarium hexaboride (SmB$_6$), a well-known Kondo insulator in which the insulating bulk arises from strong electron correlations, has recently attracted great attention owing to increasing evidence for its topological nature, thereby…

Strongly Correlated Electrons · Physics 2016-06-17 Wan Kyu Park , Lunan Sun , Alexander Noddings , Dae-Jeong Kim , Zachary Fisk , Laura H. Greene

The peculiar metallic electronic states observed in the Kondo insulator, samarium hexaboride (SmB$_6$), has stimulated considerable attention among those studying non-trivial electronic phenomena. However, experimental studies of these…

Strongly Correlated Electrons · Physics 2019-05-27 Y. Ohtsubo , Y. Yamashita , K. Hagiwara , S. Ideta , K. Tanaka , R. Yukawa , K. Horiba , H. Kumigashira , K. Miyamoto , T. Okuda , W. Hirano , F. Iga , S. Kimura

Samarium hexaboride (SmB$_6$), a representative Kondo insulator, has been characterized recently as a likely topological insulator. It is also a material with strong electron correlations, evident by the temperature dependence of its…

Strongly Correlated Electrons · Physics 2014-12-10 Predrag Nikolić

Samarium hexaboride (SmB6) has recently been considered to be a topological Kondo insulator (TKI), the first strongly correlated electron system to exhibit topological surface conduction states. In this contribution, results of electrical…

Samarium hexaboride is a candidate for the topological Kondo insulator state, in which Kondo coherence is predicted to give rise to an insulating gap spanned by topological surface states. Here we investigate the surface and bulk electronic…

We study the effects of strong electron-electron interactions on the surface of cubic topological Kondo insulators (such as samarium hexaboride, SmB$_6$). Cubic topological Kondo insulators generally support three copies of massless Dirac…

Mesoscale and Nanoscale Physics · Physics 2015-12-25 Bitan Roy , Johannes Hofmann , Valentin Stanev , Jay D. Sau , Victor Galitski

Samarium hexaboride crystallizes in a simple cubic structure (space group #221, Pm-3m), but its properties are far from being straightforward. Initially classified as a Kondo insulator born out of its intriguing intermediate valence ground…

Strongly Correlated Electrons · Physics 2020-07-20 Priscila F. S. Rosa , Zachary Fisk

This article reviews recent theoretical and experimental work on a new class of topological material - topological Kondo insulators, which develop through the interplay of strong correlations and spin-orbit interactions. The history of…

Strongly Correlated Electrons · Physics 2016-04-20 Maxim Dzero , Jing Xia , Victor Galitski , Piers Coleman

The recent discovery of topological Kondo insulators has triggered renewed interest in the well-known Kondo insulator samarium hexaboride, which is hypothesized to belong to this family. In this Letter, we study the spin texture of the…

Strongly Correlated Electrons · Physics 2015-10-14 Markus Legner , Andreas Rüegg , Manfred Sigrist

In Kondo insulator samarium hexaboride SmB$_6$, strong correlation and band hybridization lead to an insulating gap and a diverging resistance at low temperature. The resistance divergence ends at about 5 Kelvin, a behavior recently…

Strongly Correlated Electrons · Physics 2015-05-13 G. Li , Z. Xiang , F. Yu , T. Asaba , B. Lawson , P. Cai , C. Tinsman , A. Berkley , S. Wolgast , Y. S. Eo , Dae-Jeong Kim , C. Kurdak , J. W. Allen , K. Sun , X. H. Chen , Y. Y. Wang , Z. Fisk , Lu Li

As an exemplary Kondo insulator, SmB6 has been studied for several decades; however, direct evidence for the development of the Kondo coherent state and the evolution of the electronic structure in the material has not been obtained due to…

Strongly Correlated Electrons · Physics 2013-02-15 Xiaohang Zhang , N. P. Butch , P. Syers , S. Ziemak , Richard L. Greene , J. Paglione

Topological insulators are a class of materials with insulating bulk but protected conducting surfaces due to the combination of spin-orbit interactions and time-reversal symmetry. The surface states are topologically non-trivial and robust…

Compounds within the hexaboride class of materials exhibit a wide variety of interesting physical phenomena, including polaron formation and quadrupolar order. In particular, SmB$_6$ has recently drawn attention as it is considered a…

Strongly Correlated Electrons · Physics 2022-04-11 S. Wirth , P. Schlottmann

We present angle-resolved photoemission studies on the rare-earth hexaboride YbB$_6$, which has recently been predicted to be a topological Kondo insulator. Our data do not agree with the prediction and instead show that YbB$_6$ exhibits a…

Topological insulators host spin-polarized surface states which robustly span the band gap and hold promise for novel applications. Recent theoretical predictions have suggested that topologically protected surface states may similarly span…

Strongly Correlated Electrons · Physics 2013-08-28 Michael M. Yee , Yang He , Anjan Soumyanarayanan , Dae-Jeong Kim , Zachary Fisk , Jennifer E. Hoffman

Topological insulators are materials characterized by dissipationless, spin-polarized surface states resulting from non-trivial band topologies. Recent theoretical models and experiments suggest that SmB6 is the first topological Kondo…

Strongly Correlated Electrons · Physics 2014-07-25 W. A. Phelan , S. M. Koohpayeh , P. Cottingham , J. W. Freeland , J. C. Leiner , C. L. Broholm , T. M. McQueen

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
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