Abstract
We demonstrate a novel method to search for physics beyond the standard model by determining the β-ν angular correlation from the recoil-ion energy distribution after β decay of ions stored in a Penning trap. This recoil-ion energy distribution is measured with a retardation spectrometer. The unique combination of the spectrometer with a Penning trap provides a number of advantages, e.g., a high recoil-ion count rate and low sensitivity to the initial position and velocity distribution of the ions and completely different sources of systematic errors compared to other state-of-the-art experiments. Results of a first measurement with the isotope Ar35 are presented. Although currently at limited precision, we show that a statistical precision of about 0.5% is achievable with this unique method, thereby opening up the possibility of contributing to state-of-the-art searches for exotic currents in weak interactions. © 2014 American Physical Society.
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CITATION STYLE
Van Gorp, S., Breitenfeldt, M., Tandecki, M., Beck, M., Finlay, P., Friedag, P., … Severijns, N. (2014). First β-ν Correlation measurement from the recoil-energy spectrum of Penning trapped Ar 35 ions. Physical Review C - Nuclear Physics, 90(2). https://doi.org/10.1103/PhysRevC.90.025502
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