X-ray-diffraction and electrical-transport imaging of superconducting superhydride (La,Y)H10
Abstract
Abstract Understanding how microscopic structural domains govern macroscopic electronic properties is central to advancing hydride superconductors, yet such correlations remain poorly resolved under pressure. We report the synthesis and characterization of (La 0.9 Y 0.1 )H 10 superhydrides exhibiting coexisting cubic $${Fm}\bar{3}m$$ F m 3 ¯ m and hexagonal $$P{6}_{3}/{mmc}$$ P 6 3 / m m c clathrate phases observed over the pressure range from 168 GPa down to 136 GPa. Using synchrotron-based X-ray diffraction imaging at the upgraded Advanced Photon Source, we spatially resolved μm-scale distributions of these phases, revealing structural inhomogeneity across the sample. Four-probe resistance measurements confirmed superconductivity with two distinct transitions: an onset at 244 K associated with the cubic phase and a second near 220 K linked to the hexagonal phase. Notably, resistance profiles collected from multiple current and voltage permutations showed variations in transition width and onset temperature that correlated with the spatial phase distribution. These findings demonstrate a direct connection between local structural domains and superconducting behavior.
Article Details
Authors (12)
Abdul Haseeb Manayil Marathamkottil
Kui Wang
Key Lab of Biomass Energy and Material, Jiangsu Province; Jiangsu Co-Innovation Center of Efficient Processing and Utilization of Forest Resources, Institute of Chemical Industry of Forest Products
Nilesh P. Salke
Muhtar Ahart
Alexander C. Mark
Rostislav Hrubiak
Stella Chariton
University of Chicago , , 5640 South Ellis Avenue , , ,
Dean Smith
Vitali B. Prakapenka
Center for Advanced Radiation Sources
Maddury Somayazulu
Nenad Velisavljevic
Russell J. Hemley
Department of Physics, University of Illinois Chicago