Evidence for superconductivity at 190 K in a pressure-overdoped cuprate
Alexander C. Mark, Huu T. Do, David Rodriguez, D. Gonzalez Arevalo, Adam Denchfield, Eduardo H. T. Poldi, Daniel P. Phelan, N. K. Man, Russell J. Hemley
Abstract
It is well established that the critical temperature (Tc) of cuprate superconductors can be tuned by pressure. For example, compression decouples the hole doping from chemical doping allowing for overdoped samples far beyond what is possible at ambient pressure. In this work, multiple techniques are used to probe the onset of the Meissner effect at Tc as a function of pressure in Pb0.4Bi1.6Sr2Ca2Cu3O10+δ (Bi-2223) to 60 GPa in different compression environments. Samples compressed under quasihydrostatic conditions exhibit a distinctive non-monotonic pressure dependence of Tc below 25 GPa, in agreement with previous reports. With further increase in pressure Tc climbs continuously to 190 K at 60 GPa. Evidence for critical temperatures exceeding those reported to date for cuprates at ambient and high pressures, the results may be understood in terms of the proposed second superconducting regime at high hole doping.
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