MgB2 becomes superconducting just below 40 K. Whereas porous polycrystalline samples of MgB2 can be synthesized from boron powders, in this letter we demonstrate that dense wires of MgB2 can be prepared by exposing boron filaments to Mg vapor. The resulting wires have a diameter of 160 μm, are better than 80% dense and manifest the full χ=−1/4π shielding in the superconducting state. Temperature-dependent resistivity measurements indicate that MgB2 is a highly conducting metal in the normal state with ρ(40K) = 0.38 μOhm-cm. Using this value, an electronic mean free path, l≈600A˚ can be estimated, indicating that MgB2 wires are well within the clean limit. Tc, Hc2(T), and Jc data indicate that MgB2 manifests comparable or better superconducting properties in dense wire form than it manifests as a sintered pellet.
@article{arxiv.cond-mat/0102289,
title = {Superconductivity in Dense $MgB_2$ Wires},
author = {P. C. Canfield and D. K. Finnemore and S. L. Bud'ko and J. E. Ostenson and G. Lapertot and C. E. Cunningham and C. Petrovic},
journal= {arXiv preprint arXiv:cond-mat/0102289},
year = {2009}
}