Role of f-d exchange interaction and Kondo scattering in Nd doped pyrochlore Iridate (Eu1-xNdx)2Ir2O7
Sampad Mondal, M. Modak, B. Maji, M. K. Ray, S. Mandal, Swapan K., Mandal, M. Sardar, S. Banerjee

TL;DR
This study investigates how Nd doping affects the magnetic, electronic, and thermal properties of Eu1-xNdx)2Ir2O7, revealing complex interactions like Kondo scattering, spin liquid behavior, and magnetic ordering.
Contribution
It introduces the role of Nd-induced f-d exchange and Kondo interactions in modifying the properties of pyrochlore Iridates, highlighting a transition from chiral spin liquid to Kondo-like behavior.
Findings
Nd doping reduces metal-insulator transition temperature.
Resistivity behavior does not fit simple models below T_MI.
Linear specific heat suggests deviation from Weyl fermion behavior.
Abstract
We report study of magnetization, resistivity, magnetoresistance and specific heat of the pyrochlore Iridate (Eu1-xNdx)2Ir2O7 with x=0.0, 0.5 and 1.0, where spin orbit coupling, electronic correlation, magnetic frustration and Kondo scattering coexists. Metal insulator transition temperature (T_MI) decrease with increase in Nd content but always coincides with magnetic irreversibility temperature (field induced moment). Resistivity below T_MI do not fit with either activated (gap) or to any power law (gapless) dependence. The Curie constant show surprising result, that Nd induces singlet correlation (reduction of para-moment) in Ir sublattice. Magnetoresistance is negative at low temperatures below 10 K and increases strongly with increase in x and vary quadratically with field switching over to linear dependence above 50 kOe. Low temperature specific heat shows Schottky peak, coming…
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