Testing CPT symmetry in ortho-positronium decays with positronium annihilation tomography

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Abstract

Charged lepton system symmetry under combined charge, parity, and time-reversal transformation (CPT) remains scarcely tested. Despite stringent quantum-electrodynamic limits, discrepancies in predictions for the electron–positron bound state (positronium atom) motivate further investigation, including fundamental symmetry tests. While CPT noninvariance effects could be manifested in non-vanishing angular correlations between final-state photons and spin of annihilating positronium, measurements were previously limited by knowledge of the latter. Here, we demonstrate tomographic reconstruction techniques applied to three-photon annihilations of ortho-positronium atoms to estimate their spin polarisation without magnetic field or polarised positronium source. We use a plastic-scintillator-based positron-emission-tomography scanner to record ortho-positronium (o-Ps) annihilations with single-event estimation of o-Ps spin and determine the complete spectrum of an angular correlation operator sensitive to CPT-violating effects. We find no violation at the precision level of 10−4, with an over threefold improvement on the previous measurement.

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Moskal, P., Gajos, A., Mohammed, M., Chhokar, J., Chug, N., Curceanu, C., … Wiślicki, W. (2021). Testing CPT symmetry in ortho-positronium decays with positronium annihilation tomography. Nature Communications, 12(1). https://doi.org/10.1038/s41467-021-25905-9

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