English

Phase Competition, Solitons, and Domain Walls in Neutral-Ionic Transition Systems

Strongly Correlated Electrons 2016-09-12 v2

Abstract

Phase competition and excitations in the one-dimensional neutral-ionic transition systems are theoretically studied comprehensively. From the semiclassical treatment of the bosonized Hamiltonian, we examine the competition among the neutral (N), ferroelectric-ionic (Iferro_\mathrm{ferro}) and paraelectric-ionic (Ipara_\mathrm{para}) states. The phase transitions between them can become first-order when the fluctuation-induced higher-order commensurability potential is considered. In particular, the description of the first-order phase boundary between N and Iferro_\mathrm{ferro} enables us to analyze N-Iferro_\mathrm{ferro} domain walls. Soliton excitations in the three phases are described explicitly and their formation energies are evaluated across the phase boundaries. The characters of the soliton and domain-wall excitations are classified in terms of the topological charge and spin. The relevance to the experimental observations in the molecular neutral-ionic transition systems is discussed. We ascribe the pressure-induced crossover in tetrathiafulvalene-pp-chloranil (TTF-CA) at a high-temperature region to that from the N to the Ipara_\mathrm{para} state, and discuss its consequence.

Keywords

Cite

@article{arxiv.1606.02528,
  title  = {Phase Competition, Solitons, and Domain Walls in Neutral-Ionic Transition Systems},
  author = {Masahisa Tsuchiizu and Hideo Yoshioka and Hitoshi Seo},
  journal= {arXiv preprint arXiv:1606.02528},
  year   = {2016}
}

Comments

12 pages, 8 figures, published version