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Magnetic phases of Kondo lattice materials Ce5_5RhGe2_2 and Ce5_5IrGe2_2

Published 8 Sep 2026 in cond-mat.str-el and cond-mat.mtrl-sci | (2609.08580v1)

Abstract: Single crystals of Ce<em>5<em>5RhGe2_2 and Ce5_5IrGe2_2 have been systematically investigated by electrical resistivity, specific heat, and magnetization measurements. Together with Ce5_5CoGe2_2, all three compounds crystallize in the orthorhombic \emph{Pnma} structure, with the lattice parameters increasing monotonically from Co to Rh to Ir, consistent with the effect of negative chemical pressure. Magnetization measurements along the three principal crystallographic axes identify the \emph{a} axis as the easy magnetization direction throughout the series. Ce5_5RhGe2_2 exhibits ferromagnetic ordering with a Curie temperature of approximately 11.5 K and shows magnetic behavior closely resembling that of Ce5_5CoGe2_2. In contrast, Ce5_5IrGe2_2 undergoes two successive magnetic transitions at T</em>M1=12.7T</em>{\rm M1}=12.7 K and TM2=11.8T_{\rm M2}=11.8 K, and there are multiple metamagnetic transitions under magnetic fields, giving rise to magnetization plateaus at fractions of the saturation magnetization MsM_{\rm s} of approximately Ms/5M_{\rm s}/5 and Ms/3M_{\rm s}/3. The low-field metamagnetic transition along the easy axis shifts to lower field with decreasing temperature, and eventually a pronounced hysteresis loop is observed about zero-field, establishing that Ce5_5IrGe2_2 exhibits a ferrimagnetic ground state at the lowest measured temperatures.

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