Phase Diagram of Magnetic System Ca<sub>3</sub>Co<sub>2-x</sub>Mn<sub>x</sub>O<sub>6</sub>

POSTER

Abstract

The crystal structure of Ca3Co2O6 is constructed from relatively isolated chains of Co ions oriented along the c direction. Strong intrachain magnetic exchange interactions and weak interchain coupling lead to a quasi-one-dimensional ferromagnetic ground state. Chemical substitution studies show that Co and Mn ions alternate along the chains in the system Ca3Co2-xMnxO6 and that the magnetic structure is tuned from ferromagnetic to antiferromagnetic. Symmetry breaking through exchange striction also leads to multiferroic states in the vicinity of x = 1. Such a highly complex environment is expected to produce a rich temperature vs. manganese concentration phase diagram. In this study, polycrystalline samples in the system Ca3Co2-xMnxO6 were synthesized via a solid state reaction in the range 0 ≤ x ≤ 1; these samples were studied with measurements of magnetic susceptibility and heat capacity. Using these results, we constructed a temperature-Mn concentration phase diagram.

*Research was supported by the Central Washington University (CWU) Science Phase II Project and CWU Office of Undergraduate Research. Travel support was from CWU COTS and Provost Faculty Development Funds, and a CWU Graduate Studies Faculty Travel Award.

Presenters

  • Benjamin White

    • Central Washington University

Authors

  • Benjamin White

    • Central Washington University
  • Jani Jesenovec

    • Central Washington University
  • Alex Mantilla

    • Central Washington University