نتایج جستجو برای: semimetals

تعداد نتایج: 1563  

2017
Mikito Koshino

Recently a great deal of attention has been focused on condensed matter systems which have zero-gap electronic structures analogous to the massless relativistic particles. The Weyl semimetal, which is recently discovered, has a peculiar band structure characterized by the nodal touching points (Weyl nodes) and the topological surface bands connecting the Weyl nodes. In this talk, I introduce ou...

2016
J. Hu J. Y. Liu D. Graf S. M. A. Radmanesh D. J. Adams A. Chuang Y. Wang I. Chiorescu J. Wei L. Spinu Z. Q. Mao

The recent breakthrough in the discovery of Weyl fermions in monopnictide semimetals provides opportunities to explore the exotic properties of relativistic fermions in condensed matter. The chiral anomaly-induced negative magnetoresistance and π Berry phase are two fundamental transport properties associated with the topological characteristics of Weyl semimetals. Since monopnictide semimetals...

Journal: :Physical review letters 2015
Yun Wu Na Hyun Jo Masayuki Ochi Lunan Huang Daixiang Mou Sergey L Bud'ko P C Canfield Nandini Trivedi Ryotaro Arita Adam Kaminski

We use ultrahigh resolution, tunable, vacuum ultraviolet laser-based, angle-resolved photoemission spectroscopy (ARPES), temperature- and field-dependent resistivity, and thermoelectric power (TEP) measurements to study the electronic properties of WTe2, a compound that manifests exceptionally large, temperature-dependent magnetoresistance. The Fermi surface consists of two pairs of electron an...

Journal: :Nature Materials 2016

2016
Frank Arnold Chandra Shekhar Shu-Chun Wu Yan Sun Ricardo Donizeth Dos Reis Nitesh Kumar Marcel Naumann Mukkattu O Ajeesh Marcus Schmidt Adolfo G Grushin Jens H Bardarson Michael Baenitz Dmitry Sokolov Horst Borrmann Michael Nicklas Claudia Felser Elena Hassinger Binghai Yan

Weyl semimetals (WSMs) are topological quantum states wherein the electronic bands disperse linearly around pairs of nodes with fixed chirality, the Weyl points. In WSMs, nonorthogonal electric and magnetic fields induce an exotic phenomenon known as the chiral anomaly, resulting in an unconventional negative longitudinal magnetoresistance, the chiral-magnetic effect. However, it remains an ope...

Journal: :Physical review letters 2014
Awadhesh Narayan Domenico Di Sante Silvia Picozzi Stefano Sanvito

We study with first-principles methods the interplay between bulk and surface Dirac fermions in three dimensional Dirac semimetals. By combining density functional theory with the coherent potential approximation, we reveal a topological phase transition in Na_{3}Bi_{1-x}Sb_{x} and Cd_{3}[As_{1-x}P_{x}]_{2} alloys, where the material goes from a Dirac semimetal to a trivial insulator upon chang...

Journal: :Physical review letters 2014
Yong Xu Rui-Lin Chu Chuanwei Zhang

Weyl fermions, first proposed for describing massless chiral Dirac fermions in particle physics, have not been observed yet in experiments. Recently, much effort has been devoted to explore Weyl fermions around band touching points of single-particle energy dispersions in certain solid state materials (named Weyl semimetals), similar as graphene for Dirac fermions. Here we show that such Weyl s...

2018
Leslie M Schoop Andreas Topp Judith Lippmann Fabio Orlandi Lukas Müchler Maia G Vergniory Yan Sun Andreas W Rost Viola Duppel Maxim Krivenkov Shweta Sheoran Pascal Manuel Andrei Varykhalov Binghai Yan Reinhard K Kremer Christian R Ast Bettina V Lotsch

Recent interest in topological semimetals has led to the proposal of many new topological phases that can be realized in real materials. Next to Dirac and Weyl systems, these include more exotic phases based on manifold band degeneracies in the bulk electronic structure. The exotic states in topological semimetals are usually protected by some sort of crystal symmetry, and the introduction of m...

2017
Leena Aggarwal Sirshendu Gayen Shekhar Das Ritesh Kumar Vicky Süß Claudia Felser Chandra Shekhar Goutam Sheet

A Weyl semimetal is a topologically non-trivial phase of matter that hosts mass-less Weyl fermions, the particles that remained elusive for more than 80 years since their theoretical discovery. The Weyl semimetals exhibit unique transport properties and remarkably high surface spin polarization. Here we show that a mesoscopic superconducting phase with critical temperature Tc=7 K can be realize...

2018
Hsin-Hua Lai Sarah E. Grefe Silke Paschen Qimiao Si

Insulating states can be topologically nontrivial, a well-established notion that is exemplified by the quantum Hall effect and topological insulators. By contrast, topological metals have not been experimentally evidenced until recently. In systems with strong correlations, they have yet to be identified. Heavy-fermion semimetals are a prototype of strongly correlated systems and, given their ...

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