English

CDW-Exciton Condensate Competition and a Condensate Driven Force

Strongly Correlated Electrons 2016-08-03 v3

Abstract

We examine the competition between the charge-density wave (CDW) instability and the excitonic condensate (EC) in spatially separated layers of electrons and holes. The CDW and the EC order parameters (OPs), described by two different mechanisms and hence two different transition temperatures TcCDWT^{CDW}_c and TcECT^{EC}_c, are self-consistently coupled by a microscopic mean field theory. We discuss the results in our model specifically focusing on the transition-metal dichalcogenides which are considered as the most typical examples of strongly coupled CDW/EC systems with atomic layer separations where the electronic energy scales are large with the critical temperatures in the range TcECTcCDW100200KT^{EC}_c \sim T^{CDW}_c \sim 100-200 K. An important consequence of this is that the excitonic energy gap, hence the condensed free energy, vary with the layer separation resulting in a new type of force FEC{\cal F}_{EC}. We discuss the possibility of this force as the possible driver of the structural lattice deformation observed in some TMDCs with a particular attention on the 1T 1 {\it T}-TiSe2TiSe_2 below 200K200 K.

Keywords

Cite

@article{arxiv.1508.04611,
  title  = {CDW-Exciton Condensate Competition and a Condensate Driven Force},
  author = {Ege Özgün and Tuğrul Hakioğlu},
  journal= {arXiv preprint arXiv:1508.04611},
  year   = {2016}
}

Comments

8 pages, 5 figures

R2 v1 2026-06-22T10:36:54.757Z