Literature DB >> 25085172

A magnetically shielded room with ultra low residual field and gradient.

I Altarev1, E Babcock2, D Beck3, M Burghoff4, S Chesnevskaya1, T Chupp5, S Degenkolb5, I Fan4, P Fierlinger6, A Frei7, E Gutsmiedl1, S Knappe-Grüneberg4, F Kuchler1, T Lauer7, P Link7, T Lins1, M Marino1, J McAndrew1, B Niessen1, S Paul1, G Petzoldt1, U Schläpfer8, A Schnabel4, S Sharma3, J Singh1, R Stoepler1, S Stuiber1, M Sturm1, B Taubenheim1, L Trahms4, J Voigt4, T Zechlau7.   

Abstract

A versatile and portable magnetically shielded room with a field of (700 ± 200) pT within a central volume of 1 m × 1 m × 1 m and a field gradient less than 300 pT/m, achieved without any external field stabilization or compensation, is described. This performance represents more than a hundredfold improvement of the state of the art for a two-layer magnetic shield and provides an environment suitable for a next generation of precision experiments in fundamental physics at low energies; in particular, searches for electric dipole moments of fundamental systems and tests of Lorentz-invariance based on spin-precession experiments. Studies of the residual fields and their sources enable improved design of future ultra-low gradient environments and experimental apparatus. This has implications for developments of magnetometry beyond the femto-Tesla scale in, for example, biomagnetism, geosciences, and security applications and in general low-field nuclear magnetic resonance (NMR) measurements.

Year:  2014        PMID: 25085172     DOI: 10.1063/1.4886146

Source DB:  PubMed          Journal:  Rev Sci Instrum        ISSN: 0034-6748            Impact factor:   1.523


  2 in total

1.  A lightweight magnetically shielded room with active shielding.

Authors:  Niall Holmes; Molly Rea; James Chalmers; James Leggett; Lucy J Edwards; Paul Nell; Stephen Pink; Prashant Patel; Jack Wood; Nick Murby; David Woolger; Eliot Dawson; Christopher Mariani; Tim M Tierney; Stephanie Mellor; George C O'Neill; Elena Boto; Ryan M Hill; Vishal Shah; James Osborne; Rosemarie Pardington; Peter Fierlinger; Gareth R Barnes; Paul Glover; Matthew J Brookes; Richard Bowtell
Journal:  Sci Rep       Date:  2022-08-09       Impact factor: 4.996

2.  Precision magnetic field modelling and control for wearable magnetoencephalography.

Authors:  Molly Rea; Niall Holmes; Ryan M Hill; Elena Boto; James Leggett; Lucy J Edwards; David Woolger; Eliot Dawson; Vishal Shah; James Osborne; Richard Bowtell; Matthew J Brookes
Journal:  Neuroimage       Date:  2021-07-15       Impact factor: 7.400

  2 in total

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