English

Optimizing the $^{8}$Li yield for the IsoDAR Neutrino Experiment

Instrumentation and Detectors 2019-05-22 v1 High Energy Physics - Experiment High Energy Physics - Phenomenology Accelerator Physics

Abstract

The focus of this paper is on optimizing the electron-antineutrino source for the IsoDAR (Isotope Decay at Rest) experimental program. IsoDAR will perform sensitive short-baseline neutrino oscillation and electroweak measurements, among other Beyond Standard Model searches, in combination with KamLAND and/or other suitable detectors. IsoDAR will rely on the high-QQ β\beta^- decay of the 8^{8}Li isotope for producing electron-antineutrinos, created mainly via neutron capture in an isotopically enriched 7^{7}Li sleeve surrounding the Be target. In particular, this paper examines the performance, defined in terms of absolute 8^{8}Li (or, equivalently, electron-antineutrino) production rate, of various candidate sleeve materials, including a lithium-fluoride, beryllium-fluoride mixture ("FLiBe") sleeve and a homogeneous mixture of lithium and beryllium ("Li-Be"). These studies show that the 8^{8}Li yield can be increased substantially by employing a Li-Be sleeve and therefore motivate significant changes to the nominal IsoDAR design.

Keywords

Cite

@article{arxiv.1805.00410,
  title  = {Optimizing the $^{8}$Li yield for the IsoDAR Neutrino Experiment},
  author = {Adriana Bungau and Jose Alonso and Larry Bartoszek and Janet Conrad and Michael Shaevitz and Joshua Spitz},
  journal= {arXiv preprint arXiv:1805.00410},
  year   = {2019}
}

Comments

9 pages

R2 v1 2026-06-23T01:41:49.040Z