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Poisoning effect of Mn in LaFe1−xMnxAsO0.89F0.11: Unveiling a quantum critical point in the phase diagram of iron-based superconductors

F. Hammerath, P. Bonfà, S. Sanna, G. Prando, R. De Renzi, Y. Kobayashi, M. Sato, P. Carretta

DOI 10.1103/PhysRevB.89.134503 · Physical Review B

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Abstract

A superconducting-to-magnetic transition is reported for LaFeAsO0.89F0.11 where a per-thousand amount of Mn impurities is dispersed. By employing local spectroscopic techniques like muon spin rotation (μSR) and nuclear quadrupole resonance (NQR) on compounds with Mn contents ranging from x=0.025% to x=0.75%, we find that the electronic properties are extremely sensitive to the Mn impurities. In fact, a small amount of Mn as low as 0.2% suppresses superconductivity completely. Static magnetism, involving the FeAs planes, is observed to arise for x>0.1% and becomes further enhanced upon increasing Mn substitution. Also a progressive increase of low-energy spin fluctuations, leading to an enhancement of the NQR spin-lattice relaxation rate T1−1, is observed upon Mn substitution. The analysis of T1−1 for the sample closest to the crossover between superconductivity and magnetism (x=0.2%) points toward the presence of an antiferromagnetic quantum critical point around that doping level.

Source-reported materials — not catalogue approval

FormulaReported Tc (K)Pressure (GPa)Type
LaFeAsO0.89F0.11

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29Pressure not reportedunknown
LaFe0.99975Mn0.00025AsO0.89F0.11

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25Pressure not reportedunknown
LaFe0.99925Mn0.00075AsO0.89F0.11

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16.3Pressure not reportedunknown
LaFe0.999Mn0.001AsO0.89F0.11

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11.5Pressure not reportedunknown

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