Title :
Influence of fast neutron irradiation on inter- and intragrain properties of ceramic YBa2Cu3O7
Author :
Kupfer, H. ; Wiech, U. ; Apfelstedt, I. ; Flukiger, R. ; Hirmer, R. Meier ; Wolf, T. ; Scheurer, H.
Author_Institution :
Kernforschungszentrum Karlsruhe, Inst. fuer Tech. Phys., West Germany
fDate :
3/1/1989 12:00:00 AM
Abstract :
Fast neutron irradiation of YBa2Cu3O7 leads to a decrease of Tc, the variation of the ratio Tc(Φt)/Tc(O) being comparable to that observed in conventional superconducting compounds. Superconductivity vanishes above a fluence of 2×1019 cm 2. The phase-locking temperature of the intergrain junctions decreases faster with fluence than Tc. Lower AC losses due to a complete destruction of weak links and lower intergrain critical-current densities with increasing fluence reflect in addition a larger radiation sensitivity of the intergrain junction properties. The intragrain critical-current density jcG increases with increasing fluence, but its dependence on B and Φt is not at all in accordance with increasing pinning by radiation-induced defects and decreasing Tc. The intragrain current drops remarkably at low fields, passing a minimum and a subsequent maximum beyond which the common decrease of jcG with increasing field is observed. The low-field behavior, together with the much lower increase of jcG with fluence than above the maximum, points to a junction character of the current in this field range
Keywords :
barium compounds; ceramics; critical current density (superconductivity); crystal defects; flux pinning; high-temperature superconductors; neutron effects; superconducting transition temperature; yttrium compounds; AC losses; ceramic YBa2Cu3O7; fast neutron irradiation; high temperature superconductors; intergrain critical-current densities; intergrain junctions; intergrain properties; intragrain critical-current density; intragrain properties; low-field behavior; phase-locking temperature; pinning; radiation sensitivity; radiation-induced defects; transition temperature; weak links; Ceramics; Conductivity; Critical current; Critical current density; Density measurement; Josephson junctions; Magnetic properties; Neutrons; Superconducting materials; Superconducting transition temperature;
Journal_Title :
Magnetics, IEEE Transactions on