Superconducting shielding with Pb and Nb tubes for momentum sensitive measurements of neutral antimatter

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Abstract

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.

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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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