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  • Orbital-selective Dirac fer... Orbital-selective Dirac fermions and extremely flat bands in frustrated kagome-lattice metal CoSn
    Liu, Zhonghao; Li, Man; Wang, Qi ... Nature communications, 08/2020, Volume: 11, Issue: 1
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    Layered kagome-lattice 3d transition metals are emerging as an exciting platform to explore the frustrated lattice geometry and quantum topology. However, the typical kagome electronic bands, ...
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  • Unconventional chiral charg... Unconventional chiral charge order in kagome superconductor KV3Sb5
    Jiang, Yu-Xiao; Yin, Jia-Xin; Denner, M. Michael ... Nature materials, 10/2021, Volume: 20, Issue: 10
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    Intertwining quantum order and non-trivial topology is at the frontier of condensed matter physics1–4. A charge-density-wave-like order with orbital currents has been proposed for achieving the ...
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  • Topological kagome magnets ... Topological kagome magnets and superconductors
    Yin, Jia-Xin; Lian, Biao; Hasan, M Zahid Nature (London), 12/2022, Volume: 612, Issue: 7941
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    A kagome lattice naturally features Dirac fermions, flat bands and van Hove singularities in its electronic structure. The Dirac fermions encode topology, flat bands favour correlated phenomena such ...
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  • Charge order and supercondu... Charge order and superconductivity in kagome materials
    Neupert, Titus; Denner, M. Michael; Yin, Jia-Xin ... Nature physics, 02/2022, Volume: 18, Issue: 2
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    Lattice geometry, topological electron behaviour and the competition between different possible ground states all play a role in determining the properties of materials with a kagome lattice ...
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  • Quantum-limit Chern topolog... Quantum-limit Chern topological magnetism in TbMn6Sn6
    Yin, Jia-Xin; Ma, Wenlong; Cochran, Tyler A. ... Nature (London), 07/2020, Volume: 583, Issue: 7817
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    The quantum-level interplay between geometry, topology and correlation is at the forefront of fundamental physics1-15. Kagome magnets are predicted to support intrinsic Chern quantum phases owing to ...
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  • Negative flat band magnetis... Negative flat band magnetism in a spin–orbit-coupled correlated kagome magnet
    Yin, Jia-Xin; Zhang, Songtian S.; Chang, Guoqing ... Nature physics, 05/2019, Volume: 15, Issue: 5
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    Electronic systems with flat bands are predicted to be a fertile ground for hosting emergent phenomena including unconventional magnetism and superconductivity1–15, but materials that manifest this ...
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  • Weyl, Dirac and high-fold c... Weyl, Dirac and high-fold chiral fermions in topological quantum matter
    Hasan, M. Zahid; Chang, Guoqing; Belopolski, Ilya ... Nature reviews. Materials, 09/2021, Volume: 6, Issue: 9
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    Quantum materials hosting Weyl fermions have opened a new era of research in condensed matter physics. First proposed in 1929 in the context of particle physics, Weyl fermions have yet to be observed ...
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  • Giant and anisotropic many-... Giant and anisotropic many-body spin-orbit tunability in a strongly correlated kagome magnet
    Yin, Jia-Xin; Zhang, Songtian S; Li, Hang ... Nature (London), 10/2018, Volume: 562, Issue: 7725
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    Owing to the unusual geometry of kagome lattices-lattices made of corner-sharing triangles-their electrons are useful for studying the physics of frustrated, correlated and topological quantum ...
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  • Observation of Weyl fermion... Observation of Weyl fermions in a magnetic non-centrosymmetric crystal
    Sanchez, Daniel S; Chang, Guoqing; Belopolski, Ilya ... Nature communications, 07/2020, Volume: 11, Issue: 1
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    The absence of inversion symmetry in non-centrosymmetric materials has a fundamental role in the emergence of a vast number of fascinating phenomena, like ferroelectricity, second harmonic ...
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