Probing electron-argon scattering for liquid-argon based neutrino-oscillation program
Abstract
The electron scattering has been a vital tool to study the properties of the target nucleus for over five decades. Though, the particular interest on Ar nucleus stemmed from the progress in the accelerator-based neutrino-oscillation experiments. The complexity of nuclei comprising the detectors and their weak response turned out to be one of the major hurdles in the quest of achieving unprecedented precision in these experiments. The challenges are further magnified by the use of Liquid Argon Time Projection Chambers (LArTPCs) in the short- (SBN) and long-baseline (DUNE) neutrino program, with almost non-existence electron-argon scattering data and hence with no empirical basis to test and develop nuclear models for Ar. In light of these challenges, an electron-argon experiment, E12-14-012, was proposed at Jefferson Lab. The experiment has recently successfully completed collecting data for and processes, not just on Ar but also on Ti, and C targets. While the analysis is running with full steam, in this contribution, we present a brief overview of the experiment.
Cite
@article{arxiv.1711.01671,
title = {Probing electron-argon scattering for liquid-argon based neutrino-oscillation program},
author = {V. Pandey and D. Abrams and S. Alsalmi and A. M. Ankowski and J. Bane and O. Benhar and H. Dai and D. B. Day and D. W. Higinbotham and C. Mariani and M. Murphy and D. Nguyen},
journal= {arXiv preprint arXiv:1711.01671},
year = {2017}
}
Comments
5 pages, 3 figures, 1 table. Contribution to the International Workshop on (e,e'p) Processes, July 2-6, 2017, Bled, Slovenia