Superconductivity above 80 K in polyhydrides of hafnium
C.L. Zhang, X. He, Z.W. Li, S.J. Zhang, B. S. Min, J. Zhang, K. Lu,, J.F. Zhao, L.C. Shi, Y. Peng, X.C. Wang, S.M. Feng, R.C. Yu, L.H. Wang, V. B., Prakapenka, S. Chariton, H. Z. Liu, C. Q. Jin

TL;DR
This study reports the discovery of superconductivity above 80 K in hafnium polyhydrides synthesized under high pressure, marking the first 5d transition metal polyhydride superconductor with Tc above liquid nitrogen temperature.
Contribution
It is the first demonstration of high-temperature superconductivity in hafnium polyhydrides synthesized under high pressure.
Findings
Superconducting transition at Tc ~83 K at 243 GPa
Estimated upper critical field Hc2(0) ~24 Tesla
Superconducting phase identified as C2/m-HfH14
Abstract
Studies on polyhydrides are attracting growing attentions recently due to their potential high temperature superconductivity (SC). We here report the discovery of SC in hafnium polyhydrides at high pressures. The hafnium superhydrides are synthesized at high pressure and high temperature conditions using diamond anvil cell in combination with in-situ high pressure laser heating technique. The SC was investigated by in-situ high pressure resistance measurements in applied magnetic fields. A superconducting transition with onset Tc ~83 K was observed at 243 GPa. The upper critical field Hc2(0) was estimated to be 24 Tesla by GL theory and the consequent superconducting coherent length to be ~37 angstrom. Our results suggest that the superconducting phase is from C2/m-HfH14. This is the first 5d transition metal polyhydride superconductor with Tc above the liquid nitrogen temperature.
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Taxonomy
TopicsPhysics of Superconductivity and Magnetism · Iron-based superconductors research · Rare-earth and actinide compounds
