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Research output: Contribution to Journal/Magazine › Journal article › peer-review
Research output: Contribution to Journal/Magazine › Journal article › peer-review
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TY - JOUR
T1 - First measurement of the charged current ν ¯ μ double differential cross section on a water target without pions in the final state.
AU - T2K Collaboration
AU - Ali, A.
AU - Alt, C.
AU - Anthony, L.
AU - Boyd, S.B.
AU - Brailsford, D.
AU - Cartwright, S.L.
AU - Cook, L.
AU - Dealtry, T.
AU - Dolan, S.
AU - Fernandez, P.
AU - Finch, A.J.
AU - Haigh, J.T.
AU - Jiang, M.
AU - Johnson, S.
AU - Jung, C.K.
AU - Kim, H.
AU - Kim, J.
AU - King, S.
AU - Knight, A.
AU - Knox, A.
AU - Kormos, L.L.
AU - Lawe, M.
AU - Liu, S.L.
AU - Li, X.
AU - Lu, X.
AU - Martin, J.F.
AU - Murphy, S.
AU - Nakajima, Y.
AU - Nowak, J.
AU - O'Keeffe, H.M.
AU - Okumura, K.
AU - Owen, R.A.
AU - Pickering, L.
AU - Pritchard, A.
AU - Ratoff, P.N.
AU - Scott, M.
AU - Shah, R.
AU - Suzuki, S.Y.
AU - Takeuchi, Y.
AU - Thompson, L.F.
AU - Walker, J.
AU - Walsh, J.G.
AU - Wang, Y.
AU - Wilkinson, C.
AU - Wilson, J.R.
AU - Wilson, R.J.
AU - Yamada, Y.
AU - Yu, M.
PY - 2020/7/21
Y1 - 2020/7/21
N2 - This paper reports the first differential measurement of the charged-current ν¯μ 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. © 2020 authors. Published by the American Physical Society.
AB - This paper reports the first differential measurement of the charged-current ν¯μ 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. © 2020 authors. Published by the American Physical Society.
U2 - 10.1103/PhysRevD.102.012007
DO - 10.1103/PhysRevD.102.012007
M3 - Journal article
VL - 102
JO - Physical Review D
JF - Physical Review D
SN - 1550-7998
IS - 1
M1 - 012007
ER -