Abstract

Recent predictions and experimental observations of high T_{c} superconductivity in hydrogen-rich materials at very high pressures are driving the search for superconductivity in the vicinity of room temperature. We have developed a novel preparation technique that is optimally suited for megabar pressure syntheses of superhydrides using modulated laser heating while maintaining the integrity of sample-probe contacts for electrical transport measurements to 200 GPa. We detail the synthesis and characterization of lanthanum superhydride samples, including four-probe electrical transport measurements that display significant drops in resistivity on cooling up to 260 K and 180-200 GPa, and resistivity transitions at both lower and higher temperatures in other experiments. Additional current-voltage measurements, critical current estimates, and low-temperature x-ray diffraction are also obtained. We suggest that the transitions represent signatures of superconductivity to near room temperature in phases of lanthanum superhydride, in good agreement with density functional structure search and BCS theory calculations.

Keywords

SuperconductivityElectrical resistivity and conductivityLanthanumMaterials scienceCondensed matter physicsDiffractionHydrogenPhysicsNuclear physicsOptics

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Year
2019
Type
article
Volume
122
Issue
2
Pages
027001-027001
Citations
1307
Access
Closed

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Maddury Somayazulu, Muhtar Ahart, Ajay K. Mishra et al. (2019). Evidence for Superconductivity above 260 K in Lanthanum Superhydride at Megabar Pressures. Physical Review Letters , 122 (2) , 027001-027001. https://doi.org/10.1103/physrevlett.122.027001

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DOI
10.1103/physrevlett.122.027001