Transport evidence for Fermi-arc-mediated chirality transfer in the Dirac semimetal Cd3As2
暂无分享,去创建一个
A. Vishwanath | N. Nair | J. Analytis | A. Potter | P. Moll | I. Kimchi | T. Helm
[1] L. Balicas,et al. Field-induced density wave in the heavy-fermion compound CeRhIn5 , 2015, Nature Communications.
[2] Q. Gibson,et al. Ultrahigh mobility and giant magnetoresistance in the Dirac semimetal Cd3As2. , 2014, Nature materials.
[3] Z. J. Wang,et al. A stable three-dimensional topological Dirac semimetal Cd3As2. , 2014, Nature materials.
[4] B. Batlogg,et al. Intrinsic Josephson junctions in the iron-based multi-band superconductor (V2Sr4O6)Fe2As2 , 2014, Nature Physics.
[5] Lin Zhao,et al. Evidence of Topological Surface State in Three-Dimensional Dirac Semimetal Cd3As2 , 2014, Scientific Reports.
[6] S. Y. Li,et al. Quantum transport evidence for the three-dimensional Dirac semimetal phase in Cd₃As₂. , 2014, Physical review letters.
[7] Q. Gibson,et al. The crystal and electronic structures of Cd(3)As(2), the three-dimensional electronic analogue of graphene. , 2014, Inorganic chemistry.
[8] Q. Gibson,et al. Landau quantization and quasiparticle interference in the three-dimensional Dirac semimetal Cd₃As₂. , 2014, Nature materials.
[9] P. Cheng,et al. Intrinsic Josephson Junctions in the iron-based multi-band superconductor (V$_2$Sr$_4$O$_6$)Fe$_2$As$_2$ , 2014 .
[10] A. Vishwanath,et al. Quantum oscillations from surface Fermi arcs in Weyl and Dirac semimetals , 2014, Nature Communications.
[11] F. Haldane. Attachment of Surface "Fermi Arcs" to the Bulk Fermi Surface: "Fermi-Level Plumbing" in Topological Metals , 2014, 1401.0529.
[12] Z. J. Wang,et al. Discovery of a Three-Dimensional Topological Dirac Semimetal, Na3Bi , 2013, Science.
[13] Q. Gibson,et al. Experimental realization of a three-dimensional Dirac semimetal. , 2013, Physical review letters.
[14] Su-Yang Xu,et al. Observation of a three-dimensional topological Dirac semimetal phase in high-mobility Cd3As2 , 2013, Nature Communications.
[15] Q. Gibson,et al. Cd3As2 is Centrosymmetric , 2013, 1312.7576.
[16] Ashvin Vishwanath,et al. Dirac Fermions in Solids: From High-Tc Cuprates and Graphene to Topological Insulators and Weyl Semimetals , 2013, 1306.2272.
[17] Quansheng Wu,et al. Three-dimensional Dirac semimetal and quantum transport in Cd3As2 , 2013, 1305.6780.
[18] L. Balicas,et al. Transition from slow Abrikosov to fast moving Josephson vortices in iron pnictide superconductors. , 2013, Nature materials.
[19] Yan Sun,et al. Dirac semimetal and topological phase transitions in A 3 Bi ( A = Na , K, Rb) , 2012, 1202.5636.
[20] C. Kane,et al. Dirac semimetal in three dimensions. , 2011, Physical Review Letters.
[21] H. Choi,et al. 広島大学学術情報リポジトリ Hiroshima University Institutional Repository Title Chiral Orbital-Angular Momentum in the Surface States of Bi 2 Se 3 , 2022 .
[22] Ashvin Vishwanath,et al. Subject Areas : Strongly Correlated Materials A Viewpoint on : Topological semimetal and Fermi-arc surface states in the electronic structure of pyrochlore iridates , 2011 .
[23] Su-Yang Xu,et al. A topological insulator surface under strong Coulomb, magnetic and disorder perturbations , 2011, 1103.3411.
[24] A. Fedorov,et al. Electronic structure of the topological insulator Bi2Se3 using angle-resolved photoemission spectroscopy: evidence for a nearly full surface spin polarization. , 2011, Physical review letters.
[25] James Analytis,et al. Two-dimensional surface state in the quantum limit of a topological insulator , 2010 .
[26] F. Balakirev,et al. High magnetic-field scales and critical currents in SmFeAs(O, F) crystals. , 2010, Nature materials.
[27] Xi Chen,et al. Experimental demonstration of topological surface states protected by time-reversal symmetry. , 2009, Physical review letters.
[28] P. Roushan,et al. Topological surface states protected from backscattering by chiral spin texture , 2009, Nature.
[29] L. Balicas,et al. Upper critical fields and thermally-activated transport of NdFeAsO 0.7 F 0.3 single crystal , 2008, 0810.2469.
[30] L. Fu,et al. Superconducting proximity effect and majorana fermions at the surface of a topological insulator. , 2007, Physical review letters.
[31] Liang Fu,et al. Topological insulators in three dimensions. , 2006, Physical review letters.
[32] K. Novoselov,et al. Chiral tunnelling and the Klein paradox in graphene , 2006, cond-mat/0604323.
[33] A. Geim,et al. Two-dimensional gas of massless Dirac fermions in graphene , 2005, Nature.
[34] K. Hirata,et al. Periodic oscillations of Josephson-vortex flow resistance in Bi(2)Sr(2)CaCu(2)O(8+y). , 2001, Physical review letters.
[35] L. Molenkamp,et al. Hydrodynamic electron flow in high-mobility wires. , 1994, Physical review. B, Condensed matter.
[36] H. V. Houten,et al. Quantum Transport in Semiconductor Nanostructures , 2004, cond-mat/0412664.
[37] M. Tokumoto,et al. Direct Observation of Spin-Splitting of the Shubnikov- de Haas Oscillations in a Quasi-Two-Dimensional Organic Conductor (BEDT-TTF)2KHg(SCN)4 , 1990 .
[38] Scherer,et al. Boundary scattering in quantum wires. , 1989, Physical review letters.
[39] D. Shoenberg,et al. Magnetic Oscillations in Metals , 1984 .
[40] Holger Bech Nielsen,et al. The Adler-Bell-Jackiw anomaly and Weyl fermions in a crystal , 1983 .
[41] P. Wallace. Electronic g‐factor in Cd3As2 , 1979 .
[42] J. Bell,et al. A PCAC puzzle: π0→γγ in the σ-model , 1969 .
[43] S. Adler. Axial vector vertex in spinor electrodynamics , 1969 .
[44] T. Harman,et al. Cd3As2—A Noncubic Semiconductor with Unusually High Electron Mobility , 1959 .