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Related papers: Bulk and surface properties of SmB6

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After the theoretical prediction that SmB$_6$ is a topological Kondo insulator, there has been an explosion of studies on the SmB$_6$ surface. However, there is not yet an agreement on even the most basic quantities such as the surface…

The electronic structure of Sb(110) is studied by angle-resolved photoemission spectroscopy and first-principle calculations, revealing several electronic surface states in the projected bulk band gaps around the Fermi energy. The…

While SmB$_6$ attracts attention as a possible topological Kondo insulator, EuB$_6$ is known to host magnetic polarons that give rise to large magnetoresistive effects above its ferromagnetic order transition. Here we investigate single…

Strongly Correlated Electrons · Physics 2024-12-12 M. Victoria Ale Crivillero , Priscila F. S. Rosa , Z. Fisk , J. Müller , P. Schlottmann , S. Wirth

Strongly correlated Kondo insulator SmB6 is known for its peculiar low temperature residual conduction, which has recently been demonstrated to arise from a robust metallic surface state, as predicted by the theory of topological Kondo…

Strongly Correlated Electrons · Physics 2016-11-15 S. Thomas , D. J. Kim , S. B. Chung , T. Grant , Z. Fisk , Jing Xia

Topological insulators, with metallic boundary states protected against time-reversal-invariant perturbations, are a promising avenue for realizing exotic quantum states of matter including various excitations of collective modes predicted…

Strongly Correlated Electrons · Physics 2016-03-04 Yasuyuki Nakajima , Paul Syers , Xiangfeng Wang , Renxiong Wang , Johnpierre Paglione

Since its discovery as a Kondo insulator 50 years ago, SmB6 recently received a revival of interest due to detection of unexpected quantum oscillations in the insulating state, discovery of disorder-immune bulk transport, and proposals of…

Strongly Correlated Electrons · Physics 2021-09-16 Ke-Jun Xu , Mark Barber , Eric Yue Ma , Jing Xia , Monica Ciomaga Hatnean , Geetha Balakrishnan , Jan Zaanen , Zhi-Xun Shen

SmB6 is one of the candidate compounds for topological Kondo insulators, a class of materials which combines a non-trivial topological band structure with strong electronic correlations. Here we employ a multiband tight-binding description,…

Strongly Correlated Electrons · Physics 2014-11-17 Pier Paolo Baruselli , Matthias Vojta

The quest to understand the nature of the electronic state in SmB6 has been challenging, perplexing and surprising researchers for over half a century. In the theoretically predicted topological Kondo insulator SmB6, the nature of the bulk…

SmB6 is a candidate topological Kondo insulator that displays surface conduction at low temperatures. Here, we perform torque magnetization measurements as a means to detect de Haas-van Alphen (dHvA) oscillations in SmB6 crystals grown by…

Strongly Correlated Electrons · Physics 2019-05-01 S. M. Thomas , Xiaxin Ding , F. Ronning , V. Zapf , J. D. Thompson , Z. Fisk , J. Xia , P. F. S. Rosa

The predicted interplay between Kondo physics and non-trivial topology in SmB$_{6}$ has stimulated many experimental reports, some of which are in apparent contradiction. The origin of the dispute may lie on the fragility of the Kondo…

The structural properties of MgB2 superconductors have been analyzed by means of convergent-beam electron diffraction, high-resolution transmission-electron microscopy, and theoretical simulations. The MgB2 crystal has been identified to…

Superconductivity · Physics 2007-05-23 J. Q. Li , L. Li , Y. Q. Zhou , Z. A. Ren , G. C. Che , Z. X. Zhao

Recent experiments have uncovered evidence of low energy excitations in the bulk of SmB$_6$ that are perhaps associated with unconventional quasiparticles, bringing into question whether this Kondo "insulator" is truly insulating in the…

Strongly Correlated Electrons · Physics 2018-05-23 N. J. Laurita , C. M. Morris , S. M. Koohpayeh , W. A. Phelan , T. M. McQueen , N. P. Armitage

Whether the surface states in SmB6 are topological is still a critical issue in the field of topological Kondo insulators. In the magneto-transport study of single crystalline SmB6 microribbons, we have revealed a positive planar Hall…

Mesoscale and Nanoscale Physics · Physics 2019-05-01 L. Zhou , B. C. Ye , H. B. Gan , J. Y. Tang , P. B. Chen , Z. Z. Du , Y. Tian , S. Z. Deng , G. P. Guo , H. Z. Lu , F. Liu , H. T. He

Motivated by the high sensitivity to Fermi surface topology and scattering mechanisms in magneto-thermoelectric transport, we have measured the thermopower and Nernst effect on the (011)-plane of the proposed topological Kondo insulator…

Strongly Correlated Electrons · Physics 2015-02-26 Yongkang Luo , Hua Chen , Jianhui Dai , Zhu-an Xu , J. D. Thompson

The impact of non-magnetic and magnetic impurities on topological insulators is a central problem concerning their fundamental physics and possible novel spintronics and quantum computing applications. SmB$_6$, predicted to be a topological…

We prove theoretically that certain strongly correlated Kondo insulators are topological crystalline insulators with nontrivial topology protected by crystal symmetries. In particular, we find that SmB$_6$ is such a material. In addition to…

Strongly Correlated Electrons · Physics 2013-07-30 Mengxing Ye , J. W. Allen , Kai Sun

Topological insulators (TIs) have the singular distinction of being electronic insulators while harboring metallic, conductive surfaces. In ordinary materials, defects such as cracks and deformations are barriers to electrical conduction,…

Strongly Correlated Electrons · Physics 2015-06-30 S. Wolgast , Y. S. Eo , Ç. Kurdak , D. -J. Kim , Z. Fisk

Kondo insulators (KIs) are strongly correlated materials in which the interactions between 4f and conduction electrons lead to a hybridization gap opening at low temperature 1-2. SmB6 is a typical KI, but its resistivity does not diverge at…

Strongly Correlated Electrons · Physics 2014-04-28 J. Jiang , S. Li , T. Zhang , Z. Sun , F. Chen , Z. R. Ye , M. Xu , Q. Q. Ge , S. Y. Tan , X. H. Niu , M. Xia , B. P. Xie , Y. F. Li , X. H. Chen , H. H. Wen , D. L. Feng

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…

Strongly correlated topological surface states are promising platforms for next-generation quantum applications, but they remain elusive in real materials. The correlated Kondo insulator SmB$_6$ is one of the most promising candidates, with…

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