Coexistence of Superconductivity and ferromagnetism in high entropy carbide ceramics
Huchen Shu, Wei Zhong, Jiajia Feng, Hongyang Zhao, Fang Hong, Binbin, Yue

TL;DR
This paper reports the coexistence of superconductivity and ferromagnetism in high entropy carbide ceramics, revealing new insights into their interaction and potential for multifunctional electronic devices.
Contribution
It demonstrates the coexistence of superconductivity and ferromagnetism in high entropy carbides, a phenomenon rarely observed in conventional superconductors, and explores their correlation.
Findings
Superconductivity observed with Tc of 3.4 K in (Mo0.2Nb0.2Ta0.2V0.2W0.2)C0.9
Ferromagnetism evidenced by magnetic hysteresis loops
Superconductivity suppressed in stronger magnetic samples
Abstract
Generally, the superconductivity was expected to be absent in magnetic systems, but this reception was disturbed by unconventional superconductors, such as cuprates, iron-based superconductors and recently discovered nickelate, since their superconductivity is proposed to be related to the electron-electron interaction mediated by the spin fluctuation. However, the coexistence of superconductivity and magnetism is still rare in conventional superconductors. In this work, we reported the coexistence of these two quantum orderings in high entropy carbide ceramics (Mo0.2Nb0.2Ta0.2V0.2W0.2)C0.9, (Ta0.25Ti0.25Nb0.25Zr0.25)C, and they are expected to be conventional superconductors. Clear magnetic hysteresis loop was observed in these high entropy carbides, indicating a ferromagnetic ground state. A sharp superconducting transition is observed in (Mo0.2Nb0.2Ta0.2V0.2W0.2)C0.9 with a Tc of 3.4…
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Taxonomy
TopicsHigh Entropy Alloys Studies · Advanced materials and composites · Metal and Thin Film Mechanics
