Resistance of high-temperature superconducting tapes triggered by alternating magnetic field

Fuente: arXiv
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Main Authors: Pham, Quoc Hung, Noe, Mathias, Nast, Rainer
Format: Preprint
Published: 2024
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author Pham, Quoc Hung
Noe, Mathias
Nast, Rainer
author_facet Pham, Quoc Hung
Noe, Mathias
Nast, Rainer
contents Dynamic resistance occurs in a superconducting tape carrying a dc transport current while being exposed to an alternating magnetic field. This effect is caused by flux movements interacting with the transport current. The dynamic resistance is already applied in many superconducting applications, for example superconducting flux pumps or persistent current switches. The resistance is highly dependent on the magnetic field and the frequency the superconductor is subjected to and its properties. When the dynamic resistance exceeds a certain value and thus enters the magnitude of the resistances of the normal conducting layers of the HTS tape, these normal conducting layers play a significant role in the total resistance of the tape. In this paper, modifications were made to the silver stabilizer and the total resistance of the HTS tape has been investigated. The experimental results with frequencies up to 1000 Hz and magnetic field up to 277 mT show significant increases in resistance. Additionally, a multilayer model based on H-formulation is presented to calculate the losses of the superconductor. The results also show significant heating due to the losses and therefore a temperature rise, which effects the measured total resistance. These results can be further used for applications where high switchable resistances are required with zero dc resistance when the magnet is turned off.
format Preprint
id arxiv_https___arxiv_org_abs_2412_14662
institution arXiv
publishDate 2024
record_format arxiv
spellingShingle Resistance of high-temperature superconducting tapes triggered by alternating magnetic field
Pham, Quoc Hung
Noe, Mathias
Nast, Rainer
Superconductivity
Applied Physics
Dynamic resistance occurs in a superconducting tape carrying a dc transport current while being exposed to an alternating magnetic field. This effect is caused by flux movements interacting with the transport current. The dynamic resistance is already applied in many superconducting applications, for example superconducting flux pumps or persistent current switches. The resistance is highly dependent on the magnetic field and the frequency the superconductor is subjected to and its properties. When the dynamic resistance exceeds a certain value and thus enters the magnitude of the resistances of the normal conducting layers of the HTS tape, these normal conducting layers play a significant role in the total resistance of the tape. In this paper, modifications were made to the silver stabilizer and the total resistance of the HTS tape has been investigated. The experimental results with frequencies up to 1000 Hz and magnetic field up to 277 mT show significant increases in resistance. Additionally, a multilayer model based on H-formulation is presented to calculate the losses of the superconductor. The results also show significant heating due to the losses and therefore a temperature rise, which effects the measured total resistance. These results can be further used for applications where high switchable resistances are required with zero dc resistance when the magnet is turned off.
title Resistance of high-temperature superconducting tapes triggered by alternating magnetic field
topic Superconductivity
Applied Physics
url https://arxiv.org/abs/2412.14662