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The Jahn-Teller active fluoroperovskites ACrF3A\mathrm{CrF_3} A=Na+,K+A=\mathrm{Na^+},\mathrm{K^+}: thermo- and magneto optical correlations as function of the AA-site

Abstract

Chromium (II) fluoroperovskites ACrF3(A=Na+,K+)A\mathrm{CrF_3}(A\mathrm{=Na^+,K^+}) are strongly correlated Jahn-Teller active materials at low temperatures. In this paper, we examine the role that the AA-site ion plays in this family of fluoroperovskites using both experimental methods (XRD, optical absorption spectroscopy and magnetic fields) and DFT simulations. Temperature-dependent optical absorption experiments show that the spin-allowed transitions E2E_2 and E3E_3 only merge completely for AA= Na at 2 K. Field-dependent optical absorption measurements at 2 K show that the oscillating strength of the spin-allowed transitions in NaCrF3\mathrm{NaCrF_3} increases with increasing applied field. Direct magneto-structural correlations which suppress the spin-flip transitions are observed for KCrF3{\rm KCrF_3} below its Ne\'el temperature. In NaCrF3{\rm NaCrF_3} the spin-flip transitions vanish abruptly below 9 K revealing magneto-optical correlations not linked to crystal structure changes. This suggests that as the long range ordering is reduced local JT effects in the individual CrF64{\rm CrF_6^{4-}} octahedra take control of the observed behavior. Our results show clear deviation from the pattern found for the isoelectronic AxMnF3+xA_x{\rm MnF}_{3+x} system. The size of the AA-site cation is shown to be central in dictating the physical properties and phase transitions in ACrF3A{\rm CrF}_3, opening up the possibility of varying the composition to create novel states of matter with tuneable properties

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