Published January 1991 | Version v1
Report

Oxide superconductors under magnetic field

Creators

Description

One of the current most serious problems for the oxide superconductors from the standpoint of practical application is the various novel features derived mainly from their extremely short coherence. In particular, the coherence length so far observed in the cuprate superconductors is in the range of 0.1 nm perpendicular to the CuO2 plane. This seems to be creating most of the difficulties in the device fabrication and in the performance under the magnetic field. Some of the superconducting properties under the magnetic field will be discussed in terms of the short coherence length. A model will be presented based on the gradual strengthening of the pinning force with decrease in temperature and the weak coupling at the grain boundaries. Secondly, the broadening of the superconducting transition under the magnetic field is discussed. This is observed significantly only when the field is applied perpendicular to the basal plane and the relative orientation of the current to the field is insignificant in determining the extent of broadening. Besides, the change in the strength of the pinning force does not affect the width of the broadening. From these observations discussions will be made on a model based on the giant fluctuation. Based on this model, it is predicted that the coherence length along the c-axis will be the single most important material parameter to determine the performance of the superconductor under a strong magnetic field. It seems that BYCO is superior in this regard to Bi- or Tl-systems as far as the performance at 77 K is considered, although another material with the coherence length slightly longer along the c-axis is still highly desired

Additional details

Publishing Information

Imprint Title
AMSAHTS 1990: Advances in Materials Science and Applications of High Temperature Superconductors
Imprint Pagination
488 p.
Journal Page Range
p. 257.
Report number
N--92-21605

Conference

Title
advances in material science and applications of high temperature superconductors.
Acronym
AMSAHT'S 90
Dates
2-6 Apr 1990.
Place
Greenbelt, MD (United States).

Optional Information

Notes
Imprint:Abstract Only.
Secondary number(s)
NASA-CP--3100; REPT--90B00018; NAS--1.55:3100; CONF-900414--.