Irradiation with 3.5 MeV protons creates defects in Ba2YCu 3O7-δ, which can act as strong pinning sites, comparable to those produced by neutron irradiation. Indeed protons as well as neutrons undergo momentum-transferring collisions that result in atomic displacements; the additional electronic proton-solid interaction does not appear to yield defects which contribute to pinning. Under optimized conditions we have obtained Jc(T→0, H=1 T)∼2×107 A/cm2 in single crystals. At 77 K the value is still J c∼1.7×105 A/cm2, decreasing only threefold in a field of 6 T. The fluence and temperature dependence of J c suggest a model, in which spatially uncorrelated defects pin vortex cores
Radiation damage studies have been carried out to determine the changes in superconducting critical ...
We report the effect of 3 MeV proton irradiation on the suppression of the critical temperature Tc i...
Randomly oriented columnar defects provide an efficient mechanism for stabilizing the magnetic flux ...
Irradiation with 3.5 MeV protons creates defects in Ba2YCu 3O7-δ, which can act as strong pinning si...
THE defects in as-grown bulk YBa2Cu3O7 have been shown to act as weak flux pinning sites, leading to...
Radiation damage has been traditionally used to introduce artificial pinning centers into supercondu...
We have studied the effect of annealing up to 350{degrees}C on the critical current densities in YBa...
We study the effect of proton irradiation on Ba(Fe0.96Co0.04)2As2 superconducting single crystals fr...
Magnetization measurements have been performed on both pristine, as-produced single crystals of Bi2S...
Single crystals of Ba2YCu3O7-δ were equilibrated at ∼400-500°C to obtain δ∼0.05-0.15, with Tc87-83 K...
We review our investigations of defects produced in YBa{sub 2}Cu{sub 3}O{sub 7-x} by various forms o...
We report the magnetization studies of as-grown and 200 MeV Ag-ion irradiated BSCCO single crystals....
The magnetic phase diagram of untwinned single crystals of YBa{sub 2}Cu{sub 3}O{sub 7{minus}{delta}}...
The screening current density (J) and vortex pinning properties for H| | c are studied in optimally ...
We report systematic studies of the dc transport properties in proton-irradiated Y-Ba-Cu-O single cr...
Radiation damage studies have been carried out to determine the changes in superconducting critical ...
We report the effect of 3 MeV proton irradiation on the suppression of the critical temperature Tc i...
Randomly oriented columnar defects provide an efficient mechanism for stabilizing the magnetic flux ...
Irradiation with 3.5 MeV protons creates defects in Ba2YCu 3O7-δ, which can act as strong pinning si...
THE defects in as-grown bulk YBa2Cu3O7 have been shown to act as weak flux pinning sites, leading to...
Radiation damage has been traditionally used to introduce artificial pinning centers into supercondu...
We have studied the effect of annealing up to 350{degrees}C on the critical current densities in YBa...
We study the effect of proton irradiation on Ba(Fe0.96Co0.04)2As2 superconducting single crystals fr...
Magnetization measurements have been performed on both pristine, as-produced single crystals of Bi2S...
Single crystals of Ba2YCu3O7-δ were equilibrated at ∼400-500°C to obtain δ∼0.05-0.15, with Tc87-83 K...
We review our investigations of defects produced in YBa{sub 2}Cu{sub 3}O{sub 7-x} by various forms o...
We report the magnetization studies of as-grown and 200 MeV Ag-ion irradiated BSCCO single crystals....
The magnetic phase diagram of untwinned single crystals of YBa{sub 2}Cu{sub 3}O{sub 7{minus}{delta}}...
The screening current density (J) and vortex pinning properties for H| | c are studied in optimally ...
We report systematic studies of the dc transport properties in proton-irradiated Y-Ba-Cu-O single cr...
Radiation damage studies have been carried out to determine the changes in superconducting critical ...
We report the effect of 3 MeV proton irradiation on the suppression of the critical temperature Tc i...
Randomly oriented columnar defects provide an efficient mechanism for stabilizing the magnetic flux ...