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Superconductivity and Structural Phase Transitions in Caged Compounds RT<sub>2</sub>Zn<sub>20</sub> (R = La, Pr, T = Ru, Ir)
184
Citations
7
References
2010
Year
Superconducting MaterialEngineeringBismuth-based SuperconductorsZn 20Critical CurrentsNovel SuperconductorsSuperconductivityQuantum MaterialsLow-temperature SuperconductivityMaterials ScienceHigh-tc SuperconductivityPhysicsPrru 2CrystallographyTransition Metal ChalcogenidesHigh-temperature SuperconductivityCondensed Matter PhysicsApplied PhysicsStructural Phase TransitionsElectrical Resistivity ρ
Electrical resistivity ρ, specific heat C , magnetization M measurements are reported on four compounds, LaRu 2 Zn 20 , PrRu 2 Zn 20 , LaIr 2 Zn 20 , and PrIr 2 Zn 20 , which crystallize in a cubic CeCr 2 Al 20 -type structure. LaRu 2 Zn 20 , LaIr 2 Zn 20 , and PrIr 2 Zn 20 show superconducting transitions at T C = 0.2, 0.6, and ∼0.05 K, respectively, whereas PrRu 2 Zn 20 remains a normal state down to 0.04 K. This is the first observation of superconductivity in the family of RT 2 X 20 (T = transition metal; X = Al and Zn). Furthermore, structural phase transitions manifest themselves at T s = 150, 138, and 200 K for LaRu 2 Zn 20 , PrRu 2 Zn 20 , and LaIr 2 Zn 20 , respectively. No magnetic transition is found in PrRu 2 Zn 20 and PrIr 2 Zn 20 down to 1.8 K. On cooling PrIr 2 Zn 20 below 2 K, the specific heat divided by temperature, C / T , continuously increases and reaches 5 J/(K 2 ·mol) at 0.4 K, suggesting that Pr 4 f 2 electrons are involved in the heavy-fermion state, as observed in a related compound YbCo 2 Zn 20 .
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