BASE - The Baryon Antibaryon Symmetry Experiment
Abstract
The Baryon Antibaryon Symmetry Experiment (BASE) aims at performing a stringent test of the combined charge parity and time reversal (CPT) symmetry by comparing the magnetic moments of the proton and the antiproton with high precision. Using single particles in a Penning trap, the proton/antiproton -factors, i.e. the magnetic moment in units of the nuclear magneton, are determined by measuring the respective ratio of the spin-precession frequency to the cyclotron frequency. The spin precession frequency is measured by non-destructive detection of spin quantum transitions using the continuous Stern-Gerlach effect, and the cyclotron frequency is determined from the particle's motional eigenfrequencies in the Penning trap using the invariance theorem. By application of the double Penning-trap method we expect that in our measurements a fractional precision of 10 can be achieved. The successful application of this method to the antiproton will represent a factor 1000 improvement in the fractional precision of its magnetic moment. The BASE collaboration has constructed and commissioned a new experiment at the Antiproton Decelerator (AD) of CERN. This article describes and summarizes the physical and technical aspects of this new experiment.
Keywords
Cite
@article{arxiv.1604.08820,
title = {BASE - The Baryon Antibaryon Symmetry Experiment},
author = {C. Smorra and K. Blaum and L. Bojtar and M. Borchert and K. A. Franke and T. Higuchi and N. Leefer and H. Nagahama and Y. Matsuda and A. Mooser and M. Niemann and C. Ospelkaus and W. Quint and G. Schneider and S. Sellner and T. Tanaka and S. Van Gorp and J. Walz and Y. Yamazaki and S. Ulmer},
journal= {arXiv preprint arXiv:1604.08820},
year = {2023}
}
Comments
This is the presubmission version of this article: http://link.springer.com/article/10.1140%2Fepjst%2Fe2015-02607-4