Supercondutivity of Nb-Ta-Ti-Zr-Hf high entropy alloy polycrystalline and amorphous thin films

Fuente: arXiv
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Main Authors: Hruska, P., Janu, Z., Cizek, J., Lukac, F.
Format: Preprint
Published: 2025
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author Hruska, P.
Janu, Z.
Cizek, J.
Lukac, F.
author_facet Hruska, P.
Janu, Z.
Cizek, J.
Lukac, F.
contents We studied the superconductivity of high-entropy Hf-Nb-Ta-Ti-Zr alloy films affected by structural order. While films deposited from the same target on a substrate with a room temperature are amorphous, and if superconducting, only at temperatures below 1.9 K, films deposited on a substrate with a temperature of 740 $^o$C and 630 $^o$C are superconducting with a critical temperature of 6.61 K and 6.63 K, respectively. The observed effect of structural order on superconductivity can be explained by the theory of superconductivity in strongly bound amorphous materials recently published by Baggioli et al.
format Preprint
id arxiv_https___arxiv_org_abs_2509_22278
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle Supercondutivity of Nb-Ta-Ti-Zr-Hf high entropy alloy polycrystalline and amorphous thin films
Hruska, P.
Janu, Z.
Cizek, J.
Lukac, F.
Superconductivity
We studied the superconductivity of high-entropy Hf-Nb-Ta-Ti-Zr alloy films affected by structural order. While films deposited from the same target on a substrate with a room temperature are amorphous, and if superconducting, only at temperatures below 1.9 K, films deposited on a substrate with a temperature of 740 $^o$C and 630 $^o$C are superconducting with a critical temperature of 6.61 K and 6.63 K, respectively. The observed effect of structural order on superconductivity can be explained by the theory of superconductivity in strongly bound amorphous materials recently published by Baggioli et al.
title Supercondutivity of Nb-Ta-Ti-Zr-Hf high entropy alloy polycrystalline and amorphous thin films
topic Superconductivity
url https://arxiv.org/abs/2509.22278