Future experiments seeking to measure the neutron electric dipole moment (nEDM) require stable and homogeneous magnetic fields. Normally these experiments use a coil internal to a passively magnetically shielded volume to generate the magnetic field. The stability of the magnetic field generated by the coil within the magnetically shielded volume may be influenced by a number of factors. The factor studied here is the dependence of the internally generated field on the magnetic permeability μ of the shield material. We provide measurements of the temperature-dependence of the permeability of the material used in a set of prototype magnetic shields, using experimental parameters nearer to those of nEDM experiments than previously reported in the literature. Our measurements imply a range of μ1dTdμ from 0-2.7\%/K. Assuming typical nEDM experiment coil and shield parameters gives B0μdμdB0=0.01, resulting in a temperature dependence of the magnetic field in a typical nEDM experiment of dTdB0=0−270~pT/K for B0=1μT. The results are useful for estimating the necessary level of temperature control in nEDM experiments.
@article{arxiv.1612.06047,
title = {Sensitivity of Fields Generated within Magnetically Shielded Volumes to Changes in Magnetic Permeability},
author = {T. Andalib and J. W. Martin and C. P. Bidinosti and R. R. Mammei and B. Jamieson and M. Lang and T. Kikawa},
journal= {arXiv preprint arXiv:1612.06047},
year = {2017}
}