Observation of nodal line in non-symmorphic topological semimetal InBi
Topological nodal semimetal (TNS), characterized by its touching conduction and valence bands, is a newly discovered state of quantum matter which exhibits various exotic physical phenomena. Recently, a new type of TNS called topological nodal line semimetal (TNLS) is predicted where its conduction...
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Published in | New journal of physics Vol. 19; no. 6; pp. 65007 - 65014 |
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Main Authors | , , , , , , , , , , , |
Format | Journal Article |
Language | English |
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IOP Publishing
03.07.2017
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Abstract | Topological nodal semimetal (TNS), characterized by its touching conduction and valence bands, is a newly discovered state of quantum matter which exhibits various exotic physical phenomena. Recently, a new type of TNS called topological nodal line semimetal (TNLS) is predicted where its conduction and valence band form a degenerate one-dimension line which is further protected by its crystal symmetry. In this work, we systematically investigated the bulk and surface electronic structure of the non-symmorphic, TNLS in InBi (which is also a type II Dirac semimetal) with strong spin-orbit coupling by using angle resolved photoemission spectroscopy. By tracking the crossing points of the bulk bands at the Brillouin zone boundary, we discovered the nodal-line feature along the k z direction, in agreement with the ab initio calculations and confirmed it to be a new compound in the TNLS family. Our discovery provides a new material platform for the study of these exotic topological quantum phases and paves the way for possible future applications. |
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AbstractList | Topological nodal semimetal (TNS), characterized by its touching conduction and valence bands, is a newly discovered state of quantum matter which exhibits various exotic physical phenomena. Recently, a new type of TNS called topological nodal line semimetal (TNLS) is predicted where its conduction and valence band form a degenerate one-dimension line which is further protected by its crystal symmetry. In this work, we systematically investigated the bulk and surface electronic structure of the non-symmorphic, TNLS in InBi (which is also a type II Dirac semimetal) with strong spin–orbit coupling by using angle resolved photoemission spectroscopy. By tracking the crossing points of the bulk bands at the Brillouin zone boundary, we discovered the nodal-line feature along the ${{k}}_{{z}}$ direction, in agreement with the ab initio calculations and confirmed it to be a new compound in the TNLS family. Our discovery provides a new material platform for the study of these exotic topological quantum phases and paves the way for possible future applications. |
Author | Wu, Shu-Chun Jiang, Juan Okawa, Kenjiro Mo, Sung-Kwan Sasagawa, Takao Liu, Zhongkai Hwang, Chan-Cuk Ekahana, Sandy Adhitia Felser, Claudia Yan, Binghai Prabhakaran, Dharmalingam Chen, Yulin |
Author_xml | – sequence: 1 givenname: Sandy Adhitia surname: Ekahana fullname: Ekahana, Sandy Adhitia organization: University of Oxford Department of Physics, Parks Road, Oxford, OX1 3PU, United Kingdom – sequence: 2 givenname: Shu-Chun surname: Wu fullname: Wu, Shu-Chun organization: Max Planck Institute for Chemical Physics of Solids, D-01187 Dresden, Germany – sequence: 3 givenname: Juan surname: Jiang fullname: Jiang, Juan organization: Advanced Light Source, Lawrence Berkeley National Laboratory, Berkeley, CA 94720, United States of America – sequence: 4 givenname: Kenjiro surname: Okawa fullname: Okawa, Kenjiro organization: Materials and Structures Laboratory, Tokyo institute of Technology, Yokohama, Kanagawa 226-8503, Japan – sequence: 5 givenname: Dharmalingam surname: Prabhakaran fullname: Prabhakaran, Dharmalingam organization: University of Oxford Department of Physics, Parks Road, Oxford, OX1 3PU, United Kingdom – sequence: 6 givenname: Chan-Cuk surname: Hwang fullname: Hwang, Chan-Cuk organization: Pohang Accelerator Laboratory, POSTECH, Pohang 790-784, Republic of Korea – sequence: 7 givenname: Sung-Kwan surname: Mo fullname: Mo, Sung-Kwan organization: Advanced Light Source, Lawrence Berkeley National Laboratory, Berkeley, CA 94720, United States of America – sequence: 8 givenname: Takao surname: Sasagawa fullname: Sasagawa, Takao organization: Materials and Structures Laboratory, Tokyo institute of Technology, Yokohama, Kanagawa 226-8503, Japan – sequence: 9 givenname: Claudia surname: Felser fullname: Felser, Claudia organization: Max Planck Institute for Chemical Physics of Solids, D-01187 Dresden, Germany – sequence: 10 givenname: Binghai surname: Yan fullname: Yan, Binghai organization: Max Planck Institute for Chemical Physics of Solids, D-01187 Dresden, Germany – sequence: 11 givenname: Zhongkai surname: Liu fullname: Liu, Zhongkai email: Liuzhk@shanghaitech.edu.cn organization: ShanghaiTech University School of Physical Science and Technology, and CAS-Shanghai Science Research Center, Shanghai 201210, People's Republic of China – sequence: 12 givenname: Yulin surname: Chen fullname: Chen, Yulin email: Yulin.Chen@physics.ox.ac.uk organization: ShanghaiTech University School of Physical Science and Technology, and CAS-Shanghai Science Research Center, Shanghai 201210, People's Republic of China |
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Snippet | Topological nodal semimetal (TNS), characterized by its touching conduction and valence bands, is a newly discovered state of quantum matter which exhibits... |
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SubjectTerms | Brillouin zones CONDENSED MATTER PHYSICS, SUPERCONDUCTIVITY AND SUPERFLUIDITY Conduction bands Electronic structure nodal line semimetal Photoelectric emission Physics Spin-orbit interactions topological material topological semimetal Topology Valence band |
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Title | Observation of nodal line in non-symmorphic topological semimetal InBi |
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