In this paper we report on measurements and simulations of superconducting tubes in the presence of inhomogeneous externally applied magnetic fields in a cryogenic environment. The shielding effect is studied for two different tube materials, Pb and Nb, employing Hall sensors in a tabletop experiment. The measured internal and external fields of the tubes agree with the theory of the Meissner-Ochsenfeld effect [1], field trapping of type 2 superconductors, phase transitions and tube geometries. The obtained measurements are compared to a finite element simulation. Next, the simulation model is applied to estimate the shielding effect in the vicinity of a cryogenic Penning trap experiment. The controlled suppression of external magnetic fields is important for future precision experiments in atomic and antimatter physics in cryogenic environments.
CITATION STYLE
Hinterberger, A., Gerber, S., & Doser, M. (2017). Superconducting shielding with Pb and Nb tubes for momentum sensitive measurements of neutral antimatter. Journal of Instrumentation, 12(9). https://doi.org/10.1088/1748-0221/12/09/T09002
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