Observation of spin-polarized bands and domain-dependent Fermi arcs in polar Weyl semimetal MoTe2

We investigate the surface electronic structures of polar 1T′−MoTe2, the Weyl semimetal candidate realized through the nonpolar-polar structural phase transition, by utilizing the laser angle-resolved photoemission spectroscopy combined with first-principles calculations. Two kinds of domains with d...

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Veröffentlicht in:Physical review. B 2017-03, Vol.95 (12), p.121101(R)
Hauptverfasser: Sakano, M, Bahramy, M S, Tsuji, H, Araya, I, Ikeura, K, Sakai, H, Ishiwata, S, Yaji, K, Kuroda, K, Harasawa, A, Shin, S, Ishizaka, K
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Sprache:eng
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Zusammenfassung:We investigate the surface electronic structures of polar 1T′−MoTe2, the Weyl semimetal candidate realized through the nonpolar-polar structural phase transition, by utilizing the laser angle-resolved photoemission spectroscopy combined with first-principles calculations. Two kinds of domains with different surface band dispersions are observed from a single-crystalline sample. The spin-resolved measurements further reveal that the spin polarizations of the surface and the bulk-derived states show the different domain dependences, indicating the opposite bulk polarity. For both domains, some segmentlike band features resembling the Fermi arcs are clearly observed. The patterns of the arcs present the marked contrast between the two domains, respectively agreeing well with the slab calculation of (0 0 1) and (0 0 −1) surfaces. The present result strongly suggests that the Fermi arc connects the identical pair of Weyl nodes on one side of the polar crystal surface, whereas it connects between the different pairs of Weyl nodes on the other side.
ISSN:2469-9950
2469-9969
DOI:10.1103/PhysRevB.95.121101