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Defect structure of ion and neutron irradiated YBa2Cu3O7-(delta) single crystals.

机译:离子和中子照射的YBa2Cu3O7-(δ)单晶的缺陷结构。

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Using transmission electron microscopy techniques, we have begun a program to study cascade defects in the high-(Tc) superconductor YBa(sub 2)Cu(sub 3)O(sub 7(minus)(delta)). In situ ion irradiations in the High Voltage Electron Microscope (HVEM)-Accelerator Facility at Argonne National Laboratory were performed to simulate low dose neutron irradiation at both room temperature and 40 K. Diffraction contrast experiments performed in two-beam dark field conditions in different operating reflections indicated defect cascades with hydrostatic pressure-like strain fields. Visible cascade defect yields ranged from 0.3 (minus) 1.0, depending on incident ion mass. High resolution micrographs revealed that at least some of these cascades have recrystallized regions that have rotated with respect to the surrounding lattice. Samples which were neutron irradiated to doses sufficient to produce overlapped cascades show a 'cellular' structure of good crystalline material surrounded by highly defective or amorphous cell walls. It is suggested that the recrystallization observed in isolated cascade defects produced by low dose ion irradiation provides the mechanism for the formation of the cellular structure at high damage levels. Correlation of microstructure with magnetic measurements of critical current density increased by neutron irradiation and electrical resistivity measurements of the superconducting to insulating transition under ion irradiation are suggested. 15 refs., 4 figs.

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