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Superconductivity in Dense $MgB_2$ Wires

Superconductivity 2009-11-07 v2

Abstract

MgB2MgB_2 becomes superconducting just below 40 K. Whereas porous polycrystalline samples of MgB2MgB_2 can be synthesized from boron powders, in this letter we demonstrate that dense wires of MgB2MgB_2 can be prepared by exposing boron filaments to MgMg vapor. The resulting wires have a diameter of 160 μm{\mu}m, are better than 80% dense and manifest the full χ=1/4π\chi = -1/4{\pi} shielding in the superconducting state. Temperature-dependent resistivity measurements indicate that MgB2MgB_2 is a highly conducting metal in the normal state with ρ(40K)\rho (40 K) = 0.38 μOhm\mu Ohm-cmcm. Using this value, an electronic mean free path, l600 A˚l \approx 600~\AA can be estimated, indicating that MgB2MgB_2 wires are well within the clean limit. TcT_c, Hc2(T)H_{c2}(T), and JcJ_c data indicate that MgB2MgB_2 manifests comparable or better superconducting properties in dense wire form than it manifests as a sintered pellet.

Keywords

Cite

@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}
}

Comments

Figures' layout fixed