Unusual metallic state in superconducting A15-type La4H23

Author:

Guo Jianning1,Semenok Dmitrii2,Shutov Grigoriy3,Zhou Di2,Chen Su1,Wang Yulong1,Zhang Kexin1,Wu Xinyue1,Luther Sven4,Helm Toni4,Huang Xiaoli1,Cui Tian15

Affiliation:

1. State Key Laboratory of Superhard Materials, College of Physics, Jilin University , Changchun 130012 , China

2. Center for High Pressure Science and Technology Advanced Research (HPSTAR), Department of High-Temperature Superconductivity , Beijing 100193 , China

3. Skolkovo Institute of Science and Technology, Skolkovo Innovation Center, Computational and Data Science and Engineering , Moscow 121205 , Russia

4. Hochfeld-Magnetlabor Dresden (HLD-EMFL) and Würzburg-Dresden Cluster of Excellence, Helmholtz-Zentrum Dresden-Rossendorf (HZDR) , Dresden 01328 , Germany

5. School of Physical Science and Technology, Ningbo University , Ningbo 315211 , China

Abstract

ABSTRACT Hydride superconductors continue to fascinate the communities of condensed matter physics and material scientists because they host the promising near room-temperature superconductivity. Current research has concentrated on the new hydride superconductors with the enhancement of the superconducting transition temperature (Tc). The multiple extreme conditions (high pressure/temperature and magnetic field) will introduce new insights into hydride superconductors. The study of transport properties under very high magnetic fields facilitates the understanding of superconductivity in conventional hydride superconductors. In the present work, we report experimental evidence of an unusual metal state in a newly synthesized cubic A15-type La4H23 that exhibits superconductivity with a Tc reaching 105 K at 118 GPa. A large negative magnetoresistance is observed in strong pulsed magnetic fields in the non-superconducting state of this compound below 40 K. Moreover, we construct the full magnetic phase diagram of La4H23 up to 68 T at high pressure. The present work reveals anomalous electronic structural properties of A15-La4H23 under high magnetic fields, and therefore has great importance with regard to advancing the understanding of quantum transport behaviors in hydride superconductors.

Funder

National Key Research and Development Program of China

National Natural Science Foundation of China

Zhejiang Provincial Science and Technology Innovation Team

Fundamental Research Funds for the Central Universities

Beijing Natural Science Foundation

HLD

HZDR

Publisher

Oxford University Press (OUP)

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