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Thermodynamic and Transport Properties of Superconducting Mg10B2

D. K. Finnemore, J. E. Ostenson, S. L. Bud'ko, G. Lapertot, P. C. Canfield

DOI 10.1103/PhysRevLett.86.2420 · Physical Review Letters

T1

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Abstract

Transport and thermodynamic properties of a sintered pellet of the newly discovered MgB2 superconductor have been measured to determine the characteristic critical magnetic fields and critical current densities. Both resistive transition and magnetization data give similar values of the upper critical field, Hc2, with magnetization data giving dHc2/dT=0.44T/K at the transition temperature of Tc=40.2K. Close to the transition temperature, magnetization curves are thermodynamically reversible, but at low temperatures the trapped flux can be on the order of 1 T. The value of dHc/dT at Tc is estimated to be about 12mT/K, a value similar to classical superconductors like Sn. Hence, the Ginzburg-Landau parameter κ∼26. Estimates of the critical supercurrent density, Jc, using hysteresis loops and the Bean model, give critical current densities on the order of 105A/cm2. Hence the supercurrent coupling through the grain boundaries is comparable to intermetallics like Nb3Sn.

Source-reported materials — not catalogue approval

FormulaReported Tc (K)Pressure (GPa)Type
Mg10B2

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40.2Pressure not reportedunknown
Mg10B2

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40.2Pressure not reportedunknown
Mg11B2

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39.2Pressure not reportedunknown
MgB2

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39Pressure not reportedunknown

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