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Chiral Topological Semimetal with Multifold Band Crossings and Long Fermi arcs

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arxiv 1812.03310 v2 pith:QMWLXDLF submitted 2018-12-08 cond-mat.mes-hall

classification cond-mat.mes-hall
keywords topologicalfermiarcschiralfermionslongsemimetalschern
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Topological semimetals in crystals with a chiral structure (which possess a handedness due to a lack of mirror and inversion symmetries) are expected to display numerous exotic physical phenomena, including fermionic excitations with large topological charge [1], long Fermi arc surface states [2,3], unusual magnetotransport [4] and lattice dynamics [5], as well as a quantized response to circularly polarized light [6]. To date, all experimentally confirmed topological semimetals exist in crystals that contain mirror operations, meaning that these properties do not appear. Here, we show that AlPt is a structurally chiral topological semimetal that hosts new fourfold and sixfold fermions, which can be viewed as a higher spin eneralization of Weyl fermions without equivalence in elementary particle physics. These multifold fermions are located at high symmetry points and have Chern numbers larger than those in Weyl semimetals, thus resulting in multiple Fermi arcs that span the full diagonal of the surface Brillouin zone. By imaging these long Fermi arcs, we experimentally determine the magnitude and sign of their Chern number, allowing us to relate their dispersion to the handedness of their host crystal.

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  1. Strong bulk photovoltaic effect in chiral crystal in the visible spectrum

    cond-mat.mtrl-sci 2019-08 conditional novelty 6.0 of 10

    Density functional theory predicts shift current photoconductivity of 20-80 microamperes per volt squared in chiral insulators, an order of magnitude larger than previously reported materials.

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