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Rare earth substitution in lattice-tuned Sr0.3Ca0.7Fe2As2 solid solutions

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arxiv 1204.1335 v2 pith:CKXFX4NS submitted 2012-04-04 cond-mat.supr-con

Rare earth substitution in lattice-tuned Sr0.3Ca0.7Fe2As2 solid solutions

classification cond-mat.supr-con
keywords substitutionfe2as2magneticca1-xlaxfe2as2earthorderphaserare
verification ladder T0 review T1 audit T2 compute T3 formal T4 reserved
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The effects of aliovalent rare earth substitution on the physical properties of Sr0.3Ca0.7Fe2As2 solid solutions are explored. Electrical transport, magnetic susceptibility and structural characterization data as a function of La substitution into (Sr_1-y_Ca_y)_1-x_La_x_Fe2As2 single crystals confirm the ability to suppress the antiferromagnetic ordering temperature from 200 K in the undoped compound down to 100 K approaching the solubility limit of La. Despite up to ~30% La substitution, the persistence of magnetic order and lack of any signature of superconductivity above 10 K present a contrasting phase diagram to that of Ca1-xLaxFe2As2, indicating that the suppression of magnetic order is necessary to induce the high-temperature superconducting phase observed in Ca1-xLaxFe2As2.

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