First measurement of the charged current νμ double differential cross section on a water target without pions in the final state

This paper reports the first differential measurement of the charged-current νμ interaction cross section on water with no pions in the final state. The unfolded flux-averaged measurement using the T2K off-axis near detector is given in double-differential bins of μ+ momentum and angle. The integrat...

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Veröffentlicht in:Physical review. D 2020-07, Vol.102 (1), p.1
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description This paper reports the first differential measurement of the charged-current νμ interaction cross section on water with no pions in the final state. The unfolded flux-averaged measurement using the T2K off-axis near detector is given in double-differential bins of μ+ momentum and angle. The integrated cross section in a restricted phase space is σ = ( 1.11 ± 0.18 ) × 10−38 cm2 per water molecule. Comparisons with several nuclear models are also presented.
doi_str_mv 10.1103/PhysRevD.102.012007
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subjects Cross-sections
Nuclear models
Pions
Water chemistry
title First measurement of the charged current νμ double differential cross section on a water target without pions in the final state
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