Physics of Superconductivity and MagnetismMicrogrid Control and OptimizationElectromagnetic Compatibility and Noise Suppression

G. Panasyuk, C. Ebbing, John P. Murphy, N. Gheorghiu, T. Haugan

2026.2.13JOURNAL OF APPLIED PHYSICS

DOI: 10.1063/5.0314957

Abstract

A semi-analytical model that accounts for side penetration of a time-varying external magnetic field inside regions between superconducting (SC) layers is proposed for computing the alternating current (AC) power loss in a stack of N superconducting YBa2Cu3O7−x (or Y–Ba–Cu–O) tapes with zero transport current. The N dependence of the AC power loss from the model is validated by experimental studies. The results of the model application to compute the AC power loss dependence on the distance between SC layers are confirmed by our recent experiments. The approach is extended to compute the dependence of the AC power loss on different temperatures and strengths of the magnetic field. Asymptotic for the AC power loss at large N is derived. For N→∞, the AC power loss reaches a plateau and its value is found.

Citation format

PANASYUK, G., et al. AC loss in stacks of y–ba–cu–o tapes accounting for side penetration of external magnetic field. JOURNAL OF APPLIED PHYSICS, 2026, 139(6).