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We present a phenomenological study of nuclear effects in neutrino charged-current interactions, using transverse kinematic imbalances in exclusive measurements.
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The full form with the intra-nucleus potential will modify the apparent mass and the relativistic energy-momentum conversion of the initial nucleon
Cited in the paper.
The bias to the mean ω \omega is about 1% in a NuWro estimation (for technical detail see caption of Fig. 1
Cited in the paper.
The exclusive measurement discussed in this work is not sensitive to the absorption and charge exchange in FSIs, and therefore these effects are not considered
Cited in the paper.
The in-medium interaction probability is a functional of the nucleon momentum distribution in the nucleus
Cited in the paper.
For simplicity, the nucleus excitation during the basic interaction is not discussed here
Cited in the paper.
To be precise, the nuclear emission considered here is from the deexcitation within a detection time window. In practice, slow emission with a longer transition time is effectively seen as no emission. Another way the in-medium energy-momentum transfer is carried away is via the nucleus recoil
Cited in the paper.
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