paper

Fluorite-related iridate PrIrO: Crystal growth, structure, magnetism, thermodynamic, and optical properties

arXiv:2210.10496 · doi:10.1088/1361-648X/ac9a26

Abstract

Spin-orbit coupling in heavy 5 metal oxides, in particular, iridates have received tremendous interest in recent years due to the realization of exotic electronic and magnetic phases. Here, we report the synthesis, structural, magnetic, thermodynamic, and optical properties of the ternary iridate PrIrO. Single crystals of PrIrO have been grown by the KF flux method. Structural analysis shows that PrIrO crystallizes in an orthorhombic phase with symmetry. The electron energy loss spectroscopy study indicates that Pr is in a 3+ valence state, which implies a 5+ oxidation state of Ir. Magnetization data measured at high and low magnetic fields do not exhibit any bifurcation between and , however, a weak hump in is observed at 10.4~K. The specific heat data reveal two maxima at 253 K and 4.8 K. The optical conductivity spectrum shows 24 infrared-active phonon modes and reveals an insulating behavior with an optical gap of size 500~meV. During cooling down, the temperature-dependent reflectivity spectrum reveals eight extra phonon modes below the structural phase transition ( 253 K). An anomaly is observed at around in the temperature evolution of infrared-active mode frequencies suggesting the presence of significant spin-phonon coupling in the system.

18 pages, 8 figures, to appear in J. Phys.: Condens. Matter

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