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Emergence of charge density waves and a pseudogap in single-layer TiTe2

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arxiv 1805.05275 v1 pith:4EZOSBYC submitted 2018-05-14 cond-mat.mes-hall

Emergence of charge density waves and a pseudogap in single-layer TiTe2

classification cond-mat.mes-hall
keywords chargedensitywaveobservedsingle-layertitebulkemergence
verification ladder T0 review T1 audit T2 compute T3 formal T4 reserved
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abstract

Two-dimensional materials constitute a promising platform for developing nanoscale devices and systems. Their physical properties can be very different from those of the corresponding three-dimensional materials because of extreme quantum confinement and dimensional reduction. Here we report a study of TiTe$_2$ from the single-layer to the bulk limit. Using angle-resolved photoemission spectroscopy and scanning tunneling microscopy and spectroscopy, we observed the emergence of a (2 x 2) charge density wave order in single-layer TiTe$_2$ with a transition temperature of 92 $\pm$ 3 K. Also observed was a pseudogap of about 28 meV at the Fermi level at 4.2 K. Surprisingly, no charge density wave transitions were observed in 2- and multi-layer TiTe$_2$, despite the quasi-two-dimensional nature of the material in the bulk. The unique charge density wave phenomenon in the single layer raises intriguing questions that challenge the prevailing thinking about the mechanisms of charge density wave formation.

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