Abstract <p>This paper presents the results of numerical simulation of the magnetic and transport characteristics of composite high-temperature superconducting tapes based on YВа<sub>2</sub>Cu<sub>3</sub>O<InlineEquation ID="IEq1"> <EquationSource Format="TEX">\(_{{7 - x}}\)</EquationSource> <!--NuclPhys2509071StarikovskIIIb-m1--> </InlineEquation> compound exposed to Fe<sup>2+</sup> iron ions with an energy of 5.6 MeV. The simulation was conducted by the finite element method using the thermally coupled H formulation of unsteady Maxwell’s equations. For various fluxes of ionizing radiation, superconductor magnetization curves are obtained, as well as the dependence of the critical current of the thermal transition <i>J</i><sub><i>cT</i></sub> on the magnitude of fluence at the boiling point of liquid nitrogen.</p>

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Effect of Ionizing Radiation on the Magnetic and Transport Characteristics of HTS Composites

  • A. S. Starikovskii,
  • D. A. Abin,
  • A. Y. Malyavina,
  • D. A. Aleksandrov,
  • I. V. Martirosian

摘要

Abstract

This paper presents the results of numerical simulation of the magnetic and transport characteristics of composite high-temperature superconducting tapes based on YВа2Cu3O \(_{{7 - x}}\) compound exposed to Fe2+ iron ions with an energy of 5.6 MeV. The simulation was conducted by the finite element method using the thermally coupled H formulation of unsteady Maxwell’s equations. For various fluxes of ionizing radiation, superconductor magnetization curves are obtained, as well as the dependence of the critical current of the thermal transition JcT on the magnitude of fluence at the boiling point of liquid nitrogen.