نتایج جستجو برای: semimetal

تعداد نتایج: 2000  

Journal: :Nature communications 2016
Jiawei Ruan Shao-Kai Jian Hong Yao Haijun Zhang Shou-Cheng Zhang Dingyu Xing

Ideal Weyl semimetals with all Weyl nodes exactly at the Fermi level and no coexisting trivial Fermi surfaces in the bulk, similar to graphene, could feature deep physics such as exotic transport phenomena induced by the chiral anomaly. Here, we show that HgTe and half-Heusler compounds, under a broad range of in-plane compressive strain, could be materials in nature realizing ideal Weyl semime...

2015
Lin Wang Ignacio Gutiérrez-Lezama Céline Barreteau Nicolas Ubrig Enrico Giannini Alberto F. Morpurgo

Either in bulk form, or in atomically thin crystals, layered transition metal dichalcogenides continuously reveal new phenomena. The latest example is 1T'-WTe2, a semimetal found to exhibit the largest known magnetoresistance in the bulk, and predicted to become a topological insulator in strained monolayers. Here we show that reducing the thickness through exfoliation enables the electronic pr...

2016
Shih-Ting Guo R. Sankar Yung-Yu Chien Tay-Rong Chang Horng-Tay Jeng Guang-Yu Guo F. C. Chou Wei-Li Lee

Cadmium arsenide (Cd3As2) is known for its inverted band structure and ultra-high electron mobility. It has been theoretically predicted and also confirmed by ARPES experiments to exhibit a 3D Dirac semimetal phase containing degenerate Weyl nodes. From magneto-transport measurements in high quality single crystals of Cd3As2, a small effective mass m(*) ≈ 0.05 me is determined from the Shubniko...

1995
Peter Thalmeier

We present a model which can explain semiquantitatively a number of the unusual properties of Yb4As3. The structural phase transition at Tc ≃ 300K is described by a band Jahn-Teller effect of correlated electrons and is interpreted as a charge ordering of the Yb ions. The low carrier concentration in the low-temperature phase follows from the strong electron correlations of the 4f-holes on the ...

2015
Yasuo Minami Kotaro Araki Thang Duy Dao Tadaaki Nagao Masahiro Kitajima Jun Takeda Ikufumi Katayama

Dirac-like electrons in solid state have been of great interest since they exhibit many peculiar physical behaviors analogous to relativistic mechanics. Among them, carriers in graphene and surface states of topological insulators are known to behave as massless Dirac fermions with a conical band structure in the two-dimensional momentum space, whereas electrons in semimetal bismuth (Bi) are ex...

2015
Takeshi Kondo M. Nakayama R. Chen J. J. Ishikawa E.-G. Moon T. Yamamoto Y. Ota W. Malaeb H. Kanai Y. Nakashima Y. Ishida R. Yoshida H. Yamamoto M. Matsunami S. Kimura N. Inami K. Ono H. Kumigashira S. Nakatsuji L. Balents S. Shin

Strong spin-orbit coupling fosters exotic electronic states such as topological insulators and superconductors, but the combination of strong spin-orbit and strong electron-electron interactions is just beginning to be understood. Central to this emerging area are the 5d transition metal iridium oxides. Here, in the pyrochlore iridate Pr2Ir2O7, we identify a non-trivial state with a single-poin...

Journal: :Nature materials 2017
J Y Liu J Hu Q Zhang D Graf H B Cao S M A Radmanesh D J Adams Y L Zhu G F Cheng X Liu W A Phelan J Wei M Jaime F Balakirev D A Tennant J F DiTusa I Chiorescu L Spinu Z Q Mao

Weyl (WSMs) evolve from Dirac semimetals in the presence of broken time-reversal symmetry (TRS) or space-inversion symmetry. The WSM phases in TaAs-class materials and photonic crystals are due to the loss of space-inversion symmetry. For TRS-breaking WSMs, despite numerous theoretical and experimental efforts, few examples have been reported. In this Article, we report a new type of magnetic s...

Journal: :Journal of Magnetism and Magnetic Materials 2016

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