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Robust zero resistance in a superconducting high-entropy alloy at pressures up to 190 GPa.


ABSTRACT: We report the observation of extraordinarily robust zero-resistance superconductivity in the pressurized (TaNb)0.67(HfZrTi)0.33 high-entropy alloy--a material with a body-centered-cubic crystal structure made from five randomly distributed transition-metal elements. The transition to superconductivity (TC ) increases from an initial temperature of 7.7 K at ambient pressure to 10 K at ?60 GPa, and then slowly decreases to 9 K by 190.6 GPa, a pressure that falls within that of the outer core of the earth. We infer that the continuous existence of the zero-resistance superconductivity from 1 atm up to such a high pressure requires a special combination of electronic and mechanical characteristics. This high-entropy alloy superconductor thus may have a bright future for applications under extreme conditions, and also poses a challenge for understanding the underlying quantum physics.

SUBMITTER: Guo J 

PROVIDER: S-EPMC5740615 | biostudies-literature | 2017 Dec

REPOSITORIES: biostudies-literature

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Robust zero resistance in a superconducting high-entropy alloy at pressures up to 190 GPa.

Guo Jing J   Wang Honghong H   von Rohr Fabian F   Wang Zhe Z   Cai Shu S   Zhou Yazhou Y   Yang Ke K   Li Aiguo A   Jiang Sheng S   Wu Qi Q   Cava Robert J RJ   Sun Liling L  

Proceedings of the National Academy of Sciences of the United States of America 20171128 50


We report the observation of extraordinarily robust zero-resistance superconductivity in the pressurized (TaNb)<sub>0.67</sub>(HfZrTi)<sub>0.33</sub> high-entropy alloy--a material with a body-centered-cubic crystal structure made from five randomly distributed transition-metal elements. The transition to superconductivity (<i>T</i><sub><i>C</i></sub> ) increases from an initial temperature of 7.7 K at ambient pressure to 10 K at ∼60 GPa, and then slowly decreases to 9 K by 190.6 GPa, a pressure  ...[more]

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