A higher-dimensional electronic modulation in a misfit chalcogenide (Pb<sub>1-<i>x</i></sub>Sn<i><sub>x</sub></i>)<sub>1+</sub><sub>δ</sub>(TiSe<sub>2</sub>)<sub>2</sub>
ORAL
Abstract
We show spectroscopic imaging scanning tunneling microscopy of a misfit chalcogenide (Pb1-xSnx)1+δ(TiSe2)2. The crystal structure of this material consists of a rocksalt-type Pb1-xSnxSe double-layer and two hexagonal TiSe2 tri-layers, namely, layered stacking of rectangular and triangular sublattices. Despite this unique crystal structure, the low-energy electronic states of this material have been suggested to resemble those of 1T-TiSe2. As a result of termination-resolved imaging spectroscopy, we find that the coupling between the two sublattices completely suppresses the charge density wave of 1T-TiSe2 and induces a new electronic modulation characterized by a higher-dimensional description. Our finding not only provides an insight into the origin of the charge density wave of 1T-TiSe2 but also suggests that the interplay between hexagonal and tetragonal sublattices is an interesting avenue for realizing novel electronic matters.
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Presenters
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Yuhki Kohsaka
RIKEN, CEMS, RIKEN
Authors
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Yuhki Kohsaka
RIKEN, CEMS, RIKEN
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Masaharu Shirata
Okayama Univ
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Teppei Ueno
Okayama Univ
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Tadashi Machida
RIKEN, CEMS, RIKEN
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Tetsuo Hanaguri
RIKEN, CEMS, RIKEN, Center for Emergent Matter Science, RIKEN
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Kaya Kobayashi
Okayama Univ