Systematic Uncertainties and Cross-Checks for the NOvA Joint νμ+νe Analysis
Authors/Creators
- 1. Michigan State University
- 2. Indiana University
Description
One of the key physics goals of NOvA is to constrain oscillation parameters such as the octant of θ23, δcp, and the neutrino mass hierarchy via a joint νμ+νe oscillation analysis. We do this by propagating νμs from the world's most powerful neutrino beam at Fermilab, over a baseline of 810 km to northern Minnesota, USA, and measure the νμ to νeoscillation probability. NOvA will be presenting its latest oscillation results, based on 9×1020 (7×1020) protons on target neutrino (antineutrino) data. Strong constraints on these oscillation parameters require a rigorous treatment of systematic uncertainties and performing thorough cross-checks. In this poster, we present an overview of the treatment of systematic uncertainties, considering contributions from the beam flux, calibration, and uncertainties in our modeling of interactions, as well as cross checks using muon removed simulations and cosmic muon brem showers.
Files
NOvA_Systematics_and_MRBrem_MRE_CrossChecks.pdf
Files
(6.0 MB)
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Additional details
Related works
- Is cited by
- 10.5281/zenodo.1292418 (DOI)
- https://arxiv.org/abs/1808.10760 (URL)