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      Dynamic current-current susceptibility in three-dimensional Dirac and Weyl semimetals

      , ,
      Physical Review B
      American Physical Society (APS)

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          Discovery of a Three-dimensional Topological Dirac Semimetal, Na3Bi

          Three-dimensional (3D) topological Dirac semimetals (TDSs) represent a novel state of quantum matter that can be viewed as '3D graphene'. In contrast to two-dimensional (2D) Dirac fermions in graphene or on the surface of 3D topological insulators, TDSs possess 3D Dirac fermions in the bulk. The TDS is also an important boundary state mediating numerous novel quantum states, such as topological insulators, Weyl semi-metals, Axion insulators and topological superconductors. By investigating the electronic structure of Na3Bi with angle resolved photoemission spectroscopy, we discovered 3D Dirac fermions with linear dispersions along all momentum directions for the first time. Furthermore, we demonstrated that the 3D Dirac fermions in Na3Bi were protected by the bulk crystal symmetry. Our results establish that Na3Bi is the first model system of 3D TDSs, which can also serve as an ideal platform for the systematic study of quantum phase transitions between rich novel topological quantum states.
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            Discovery of a Weyl Fermion Semimetal and Topological Fermi Arcs

            We report discovery of a Weyl Fermion semimetal and Topological Fermi arcs in TaAs
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              Experimental discovery of Weyl semimetal TaAs

              , , (2015)
              Weyl semimetals are a class of materials that can be regarded as three-dimensional analogs of graphene breaking time reversal or inversion symmetry. Electrons in a Weyl semimetal behave as Weyl fermions, which have many exotic properties, such as chiral anomaly and magnetic monopoles in the crystal momentum space. The surface state of a Weyl semimetal displays pairs of entangled Fermi arcs at two opposite surfaces. However, the existence of Weyl semimetals has not yet been proved experimentally. Here we report the experimental realization of a Weyl semimetal in TaAs by observing Fermi arcs formed by its surface states using angle-resolved photoemission spectroscopy. Our first-principles calculations, matching remarkably well with the experimental results, further confirm that TaAs is a Weyl semimetal.
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                Author and article information

                Journal
                PRBMDO
                Physical Review B
                Phys. Rev. B
                American Physical Society (APS)
                2469-9950
                2469-9969
                January 2018
                January 3 2018
                : 97
                : 3
                Article
                10.1103/PhysRevB.97.035403
                e1e7a205-ee5b-4fb8-8675-c3f801d7ac7f
                © 2018

                https://link.aps.org/licenses/aps-default-license

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