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Loss Separation Modeling and Optimization of Permalloy Sheets for Low-Noise Magnetic Shielding Devices

  • Yuzheng Ma
  • , Minxia Shi*
  • , Yachao Zhang
  • , Teng Li*
  • , Yusen Li
  • , Leran Zhang
  • , Shuai Yuan
  • *Corresponding author for this work
  • Beihang University
  • Beijing Institute of Aerospace Microsystems

Research output: Contribution to journalArticlepeer-review

Abstract

With the breakthroughs in quantum theory and the rapid advancement of quantum precision measurement sensor technologies, atomic magnetometers based on the spin-exchange relaxation-free (SERF) mechanism have played an increasingly important role in ultra-weak biomagnetic field detection, inertial navigation, and fundamental physics research. To achieve high-precision measurements, SERF magnetometers must operate in an extremely weak magnetic field environment, while the detection of ultra-weak magnetic signals relies on a low-noise background. Therefore, accurate measurement, modeling, and analysis of magnetic noise in shielding materials are of critical importance. In this study, the magnetic noise of permalloy sheets was modeled, separated, and analyzed based on their measured magnetic properties, providing essential theoretical and experimental support for magnetic noise evaluation in shielding devices. First, a single-sheet tester (SST) was modeled via finite element analysis to investigate magnetization uniformity, and its structure was optimized by adding a supporting connection plate. Second, an experimental platform was established to verify magnetization uniformity and to perform accurate low-frequency measurements of hysteresis loops under different frequencies and field amplitudes while ensuring measurement precision. Finally, the Bertotti loss separation method combined with a PSO optimization algorithm was employed to accurately fit and analyze the three types of losses, thereby enabling precise separation and calculation of hysteresis loss. This provides essential theoretical foundations and primary data for magnetic noise evaluation in shielding devices.

Original languageEnglish
Article number4527
JournalMaterials
Volume18
Issue number19
DOIs
StatePublished - Oct 2025

Keywords

  • Bertotti loss separation method
  • SST measuring device
  • hysteresis noise
  • imaginary magnetic permeability
  • magnetic properties

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