Spin-crossover in molecular crystals: An electron-coupled local vibrations model

C. Rodríguez-Castellanos, Y. Plasencia, E. Reguera

Research output: Contribution to journalArticlepeer-review

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Abstract

A model of eg electrons at octahedral sites coupled to local vibrational “breathing” modes interacting with its near neighbors is proposed to describe spin-crossover (SCO) in molecular crystals. Decoupling vibrations leads to an effective electron Hamiltonian with renormalized site energies, where ferromagnetic and antiferromagnetic, short range and long range electron-electron interactions arise in a natural way. An exact analytic expression for the free energy functional is derived. A phase diagram for homogenous phases, describing the basic phenomenology of SCO is obtained and the transition temperatures are expressed in terms of model parameters. Under appropriate conditions, two-step transitions are found to take place for systems with both, short range and long range interactions. Stability with respect to spatial fluctuations is discussed.

Original languageEnglish
Pages (from-to)91-96
Number of pages6
JournalRevista Cubana de Fisica
Volume35
Issue number2
StatePublished - 2018
Externally publishedYes

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