Influence of gold diffusion-doped on phase formation, superconducting and microstructure properties of Bi {sub 1.8} Pb {sub 0.35} Sr {sub 1.9} Ca {sub 2.1} Cu {sub 3} O {sub y …
Yazarlar (4)
M Akdogan
C Terzioglu
A Gencer
Kastamonu Üniversitesi
Makale Türü Özgün Makale (Uluslararası alan indekslerindeki dergilerde yayınlanan tam makale)
Dergi Adı Journal of Physics. Conference Series (Online)
Makale Dili Basım Tarihi 03-2009
Cilt / Sayı / Sayfa 153 / 0 / – DOI
Makale Linki https://www.osti.gov/etdeweb/biblio/21373268
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Özet
We report on low-field magnetic properties of gold diffusion-doped Bi{sub 1.8}Pb{sub 0.35}Sr{sub 1.9}Ca{sub 2.1}Cu{sub 3}O{sub y} superconducting bulk samples by performing ac susceptibility measurements. The undoped samples were prepared by the standard solid-state reaction method. Doping of Bi{sub 1.8}Pb{sub 0.35}Sr{sub 1.9}Ca{sub 2.1}Cu{sub 3}O{sub y} was carried out by means of Au-diffusion during sintering from an evaporated gold film on pellets. To investigate the effect of gold-diffusion and diffusion-annealing duration on transport, magnetic and microstructure properties of the superconducting samples we performed magnetoresistivity, scanning electron microscopy (SEM) and X-ray diffraction (XRD) measurements. The ac susceptibility as a function of temperature measurements were carried out at different values of the ac magnetic field amplitudes (Hac) in the range between 20A/m and 320 A/m for 211 Hz. The imaginary part of ac susceptibility measurements is used to calculate intergranular critical current density J{sub c}(T{sub p}) using the Bean Model. J{sub c}(T{sub p}) is seen to increase from 60 A cm{sup -2} to 90 A cm{sup -2} with increasing diffusion-annealing time from 10 h to 50 h. The peak temperature, T{sub p}, in the imaginary part of the ac susceptibility is shifted to a lower temperature with decreasing diffusion-annealing duration as well as increasing ac magnetic fields. The force pinning density (alpha{sub j}j (0)) increased with increasing diffusion annealing time. The value of T{sub c} in gold-diffused samples, in comparison with the undoped samples, increased from 100 +- 0.2 K to 104 +- 0.2 K. It was …
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