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Fermi surface reconstruction and electron dynamics at the charge-density-wave transition in TiSe2

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arxiv 1911.01945 v2 pith:HXZGGTJG submitted 2019-11-05 cond-mat.str-el

Fermi surface reconstruction and electron dynamics at the charge-density-wave transition in TiSe2

classification cond-mat.str-el
keywords electrontransitionfermimobilitiesreconstructionsurfacetise2associated
verification ladder T0 review T1 audit T2 compute T3 formal T4 reserved
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The evolution of the charge carrier concentrations and mobilities are examined across the charge-density-wave (CDW) transition in TiSe2. Combined quantum oscillation and magnetotransport measurements show that a small electron pocket dominates the electronic properties at low temperatures whilst an electron and hole pocket contribute at room temperature. At the CDW transition, an abrupt Fermi surface reconstruction and a minimum in the electron and hole mobilities are extracted from two-band and Kohler analysis of magnetotransport measurements. The minimum in the mobilities is associated with the overseen role of scattering from the softening CDW mode. With the carrier concentrations and dynamics dominated by the CDW and the associated bosonic mode, our results highlight TiSe2 as a prototypical system to study the Fermi surface reconstruction at a density-wave transition.

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