The influence of the in-plane lattice constant on the superconducting transition temperature of FeSe0.7Te0.3 thin films

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Date
2017
Volume
7
Issue
Journal
AIP Advances
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Publisher
New York : American Institute of Physics
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Abstract

Epitaxial Fe(Se,Te) thin films were prepared by pulsed laser deposition on (La0.18Sr0.82)(Al0.59Ta0.41)O3 (LSAT), CaF2-buffered LSAT and bare CaF2 substrates, which exhibit an almost identical in-plane lattice parameter. The composition of all Fe(Se,Te) films were determined to be FeSe0.7Te0.3 by energy dispersive X-ray spectroscopy, irrespective of the substrate. Albeit the lattice parameters of all templates have comparable values, the in-plane lattice parameter of the FeSe0.7Te0.3 films varies significantly. We found that the superconducting transition temperature (Tc) of FeSe0.7Te0.3 thin films is strongly correlated with their a-axis lattice parameter. The highest Tc of over 19 K was observed for the film on bare CaF2 substrate, which is related to unexpectedly large in-plane compressive strain originating mostly from the thermal expansion mismatch between the FeSe0.7Te0.3 film and the substrate.

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Yuan, F., Iida, K., Grinenko, V., Chekhonin, P., Pukenas, A., Skrotzki, W., et al. (2017). The influence of the in-plane lattice constant on the superconducting transition temperature of FeSe0.7Te0.3 thin films (New York : American Institute of Physics). New York : American Institute of Physics. https://doi.org//10.1063/1.4989566
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CC BY 4.0 Unported