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Preformed excitonic liquid route to a charge density wave in 2H-TaSe$_2$

Published 5 Aug 2010 in cond-mat.str-el and cond-mat.mtrl-sci | (1008.0942v3)

Abstract: Recent experiments on 2H-TaSe$2$ contradict the long-held view of the charge density wave arising from a nested band structure. An intrinsically strong coupling view, involving a charge density wave state arising as a Bose condensation of preformed excitons emerges as an attractive, albeit scantily investigated alternative. Using local density approximation plus multiorbital dynamic mean-field theory, we show that this scenario agrees with a variety of normal state data for 2H-TaSe${2}$. Based thereupon, the ordered states in a subset of dichalcogenides should be viewed as instabilities of a correlated, preformed excitonic liquid.

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