English

Charge and spin interplay in a molecular-dimer-based organic Mott insulator

Strongly Correlated Electrons 2022-08-31 v2

Abstract

Triangular lattice quasi-two-dimensional Mott insulators based on BEDT-TTF molecule and its analogies present a possibility to produce exotic phases by coupling charge and spin degrees of freedom. In this work we discuss magnetic properties of one of such materials, κ\kappa-(BEDT-TTF)2_2Hg(SCN)2_2Cl, which is found at the border of the phase transition between a Mott insulator into a charge ordered state. Our magnetic susceptibility and cantilever magnetisation measurements demonstrate how the charge degree of freedom defines magnetic properties for few different charge phases observed in this material as a function of temperature. Between TCO=30 KT_{CO}=30~K and TS=24 KT_S=24~K we observe charge and spin separation due to one-dimensional charge stripes formed in this material below TCO=30 KT_{CO}=30~K. Below TS=24 KT_S=24~K charge and spin degrees of freedom demonstrate coupling. Spin singlet correlations develop below 24~K, however melting of charge order below 15~K prevents the spin singlet state formation, leaving the system in the inhomogeneous state with charge ordered spin singlet domains and charge and spin fluctuating ones.

Keywords

Cite

@article{arxiv.2102.11342,
  title  = {Charge and spin interplay in a molecular-dimer-based organic Mott insulator},
  author = {Natalia Drichko and Shiori Sugiura and Minoru Yamashita and Akira Ueda and Shinya Uji and Nora Hassan and Yoshiya Sunairi and Hatsumi Mori and Elena I. Zhilyaeva and Svetlana Torunova and Rimma N. Lyubovskaya},
  journal= {arXiv preprint arXiv:2102.11342},
  year   = {2022}
}
R2 v1 2026-06-23T23:25:11.582Z