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相关论文: Imaging the Kondo Insulating Gap on SmB6

200 篇论文

SmB6, a well-known Kondo insulator, has been proposed to be an ideal topological insulator with states of topological character located in a clean, bulk electronic gap, namely the Kondo hybridisation gap. Seeing as the Kondo gap arises from…

We use scanning tunneling microscopy to investigate the (001) surface of cleaved SmB6 Kondo insulator. Variable temperature dI/dV spectroscopy up to 60 K reveals a gap-like density of state suppression around the Fermi level, which is due…

材料科学 · 物理学 2014-04-02 Wei Ruan , Cun Ye , Minghua Guo , Fei Chen , Xianhui Chen , Guangming Zhang , Yayu Wang

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…

强关联电子 · 物理学 2017-01-12 Lin Jiao , Sahana Rößler , D. J. Kim , L. H. Tjeng , Z. Fisk , F. Steglich , S. Wirth

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…

强关联电子 · 物理学 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

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…

We have investigated the surface states of a potential mixed-valent topological insulator SmB$_6$ based on the first principles density functional theory slab band structure analysis. We have found that metallic surface states are formed in…

强关联电子 · 物理学 2015-06-19 Junwon Kim , Kyoo Kim , Chang-Jong Kang , Sooran Kim , Hong Chul Choi , J. -S. Kang , J. D. Denlinger , B. I. Min

The proposed topological Kondo insulator SmB$_{6}$ hosts a bulk Kondo hybridization gap that stems from strong electronic correlations and a metallic surface state whose effective mass remains disputed. Thermopower and scanning tunneling…

Recent theoretical calculations and experimental results suggest that the strongly correlated material SmB$_{6}$ may be a realization of a topological Kondo insulator. We have performed an angle-resolved photoemission spectroscopy study on…

The Kondo insulator SmB6 has long been known to exhibit low temperature transport anomalies whose origin is of great interest. Here we uniquely access the surface electronic structure of the anomalous transport regime by combining…

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…

强关联电子 · 物理学 2016-06-17 Wan Kyu Park , Lunan Sun , Alexander Noddings , Dae-Jeong Kim , Zachary Fisk , Laura H. Greene

Topological Kondo insulators are a new class of topological insulators in which metallic surface states protected by topological invariants reside in the bulk band gap at low temperatures. Unlike other three-dimensional topological…

强关联电子 · 物理学 2016-07-12 N. Xu , H. Ding , M. Shi

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…

强关联电子 · 物理学 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

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…

强关联电子 · 物理学 2013-02-15 Xiaohang Zhang , N. P. Butch , P. Syers , S. Ziemak , Richard L. Greene , J. Paglione

Kondo insulators are primary candidates in the search for strongly correlated topological quantum phases, which may host topological order, fractionalization, and non-Abelian statistics. Within some Kondo insulators, the hybridization gap…

The concept of a topological Kondo insulator (TKI) has been brought forward as a new class of topological insulators in which non-trivial surface states reside in the bulk Kondo band gap at low temperature due to the strong spin-orbit…

The true topological nature of the Kondo insulator SmB$_6$ remains to be unveiled. Our previous tunneling study not only found evidence for the existence of surface Dirac fermions, but it also uncovered that they inherently interact with…

The Kondo insulator compound SmB6 has emerged as a strong candidate for the realization of a topologically nontrivial state in a strongly correlated system, a topological Kondo insulator, which can be a novel platform for investigating the…

强关联电子 · 物理学 2019-07-03 Jehyun Kim , Chaun Jang , Xiangfeng Wang , Johnpierre Paglione , Seokmin Hong , Dohun Kim

Planar tunneling spectroscopy of the Kondo insulator SmB$_6$ suggests that an interaction between the surface Dirac fermions and the bulk spin excitons results in incompletely protected topological surface states. To gain further insight…

As the thickness of a three-dimensional (3D) topological insulator (TI) becomes comparable to the penetration depth of the surface states, quantum tunneling between surfaces turns their gapless Dirac electronic structure into a gapped…

介观与纳米尺度物理 · 物理学 2020-04-13 Su Kong Chong , Lizhe Liu , Taylor D. Sparks , Feng Liu , Vikram V. Deshpande

We present results of Scanning Tunneling Microscopy and Spectroscopy (STS) measurements on the "Kondo insulator" SmB$_6$. The vast majority of surface areas investigated was reconstructed but, infrequently, also patches of varying size of…

强关联电子 · 物理学 2014-04-04 S. Rößler , Tae-Hwan Jang , D. J. Kim , L. H. Tjeng , Z. Fisk , F. Steglich , S. Wirth
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