Effective low-temperature flux pinning by Au ion irradiation in HTS coated conductors
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Authors
Strickland, N. M.
Wimbush, S. C.
Kennedy, J. V.
Ridgway, M. C.
Talantsev, E. F.
Long, N. J.
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Institute of Electrical and Electronics Engineers (IEEE)
Abstract
We report the effects of heavy-ion irradiation on
critical currents in (Y,Dy)Ba2Cu3O7−δ coated conductors made
by a commercial metal organic deposition process. Irradiation
with 185 MeV Au ions is investigated and contrasted with previous
results on 74 MeV Ag ions. The change in critical current (Ic)
is reported as a function of temperature (30–77 K), magnetic
field (0–7 T) and magnetic-field angle (full angle dependence).
Significant improvements are seen particularly at 30–40 K where
Ic can be enhanced over a wide angular range and the minimum
of Ic(θ) has been enhanced by up to 60%. This contrasts with
the data for the commonly utilized regime of 77 K, 1 T where the
Ic enhancements are small or limited to a narrow angular range.
This data also serves to illustrate the need to measure Ic in all
of the temperature and field regimes of technical interest and to
measure the complete field-angular dependence Ic(θ).
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IEEE Transactions on Applied Superconductivity