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Samarium hexaboride is a classic three-dimensional mixed valence system with a high-temperature metallic phase that evolves into a paramagnetic charge insulator below 40 kelvin. A number of recent experiments have suggested the possibility…

Strongly Correlated Electrons · Physics 2018-05-08 Debanjan Chowdhury , Inti Sodemann , T. Senthil

Samarium hexaboride (SmB6) has been presumed to show a topological Kondo insulating state consisting of fully occupied quasiparticle bands in the concept of a Fermi liquid. This gap emerging below a small coherence temperature is the…

Strongly Correlated Electrons · Physics 2017-10-10 Chul-Hee Min , K. -S. Chen , P. Lutz , H. Bentmann , B. Y. Kang , B. K. Cho , J. Werner , F. Goth , F. Assaad , F. Reinert

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…

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…

Samarium hexaboride (SmB$_6$), a Kondo insulator with mixed valence, has recently attracted much attention as a possible host for correlated topological surface states. Here, we use a combination of x-ray absorption and reflectometry…

The discovery of topologically non-trivial states in band insulators has induced an extensive search for topological phase in strongly correlated electron systems. In particular, samarium hexaboride (SmB$_6$) has drawn much attention as it…

Strongly Correlated Electrons · Physics 2014-06-11 Chul-Hee Min , P. Lutz , S. Fiedler , B. Y. Kang , B. K. Cho , H. -D. Kim , H. Bentmann , F. Reinert

Samarium hexaboride (SmB6), which lies in the mixed valence regime in the Anderson model, has been predicted to possess topologically protected surface states. The intensive investigations on SmB6 have brought up the long standing questions…

Strongly Correlated Electrons · Physics 2017-10-10 P. Lutz , M. Thees , T. R. F. Peixoto , B. Y. Kang , B. K. Cho , Chul-Hee Min , F. Reinert

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

By a combined angle-resolved photoemission spectroscopy and density functional theory study, we discover that the surface metallicity is polarity-driven in SmB$_6$. Two surface states, not accounted for by the bulk band structure, are…

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…

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

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

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

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…

Calculations unanimously predict samarium hexaboride to be a topological Kondo insulator, the first topological insulator driven by strong electron correlation. As of today it appears also experimentally established as the only…

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

We advert to the fact that presence of valence fluctuations (VFs) in semiconductors with in-gap impurity bands unconditionally leads to dynamical changes (fluctuations) of energies of localized impurity states. We provide arguments that in…

Strongly Correlated Electrons · Physics 2020-10-08 I. Batko , M. Batkova

Samarium hexaboride is a topological Kondo insulator, with metallic surface states manifesting from its insulating band structure. Since the insulating bulk itself is driven by strong correlations, both the bulk and surface host compelling…

Strongly Correlated Electrons · Physics 2019-01-16 W. T. Fuhrman , J. C. Leiner , J. W. Freeland , M. van Veenendaal , S. M. Koohpayeh , W. Adam Phelan , T. M. McQueen , C. Broholm

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

SmB$_6$ exhibits a small (15-20 meV) bandgap at low temperatures due to hybridized $d$ and $f$ electrons, a tiny (3 meV) transport activation energy $(E_{A})$ above 4 K, and surface states accessible to transport below 2 K. We study its…

Strongly Correlated Electrons · Physics 2017-06-21 S. Wolgast , Y. S. Eo , K. Sun , Ç. Kurdak , F. F. Balakirev , M. Jaime , D. -J. Kim , Z. Fisk
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