English

Effects of Neutron Irradiation on Carbon Doped MgB2 Wire Segments

Superconductivity 2009-11-11 v1

Abstract

We have studied the evolution of superconducting and normal state properties of neutron irradiated Mg(B.962_{.962}C.038_{.038})2_2 wire segments as a function of post exposure annealing time and temperature. The initial fluence fully suppressed superconductivity and resulted in an anisotropic expansion of the unit cell. Superconductivity was restored by post-exposure annealing. The upper critical field, Hc2_{c2}(T=0), approximately scales with Tc_c starting with an undamaged Tc_c near 37 K and Hc2_{c2}(T=0) near 32 T. Up to an annealing temperature of 400 o^ oC the recovery of Tc_c tends to coincide with a decrease in the normal state resistivity and a systematic recovery of the lattice parameters. Above 400 o^ oC a decrease in order along the c- direction coincides with an increase in resistivity, but no apparent change in the evolution of Tc_c and Hc2_{c2}. To first order, it appears that carbon doping and neutron damaging effect the superconducting properties of MgB2_2 independently.

Keywords

Cite

@article{arxiv.cond-mat/0507275,
  title  = {Effects of Neutron Irradiation on Carbon Doped MgB2 Wire Segments},
  author = {R. H. T. Wilke and S. L. Bud'ko and P. C. Canfield and D. K. Finnemore and Raymond J. Suplinskas and J. Farmer and S. T. Hannahs},
  journal= {arXiv preprint arXiv:cond-mat/0507275},
  year   = {2009}
}