English

Determining the neutrino mass with Cyclotron Radiation Emission Spectroscopy - Project 8

Instrumentation and Detectors 2017-03-31 v1 High Energy Physics - Experiment Nuclear Experiment

Abstract

The most sensitive direct method to establish the absolute neutrino mass is observation of the endpoint of the tritium beta-decay spectrum. Cyclotron Radiation Emission Spectroscopy (CRES) is a precision spectrographic technique that can probe much of the unexplored neutrino mass range with O(eV)\mathcal{O}({\rm eV}) resolution. A lower bound of m(νe)9(0.1)meVm(\nu_e) \gtrsim 9(0.1)\, {\rm meV} is set by observations of neutrino oscillations, while the KATRIN Experiment - the current-generation tritium beta-decay experiment that is based on Magnetic Adiabatic Collimation with an Electrostatic (MAC-E) filter - will achieve a sensitivity of m(νe)0.2eVm(\nu_e) \lesssim 0.2\,{\rm eV}. The CRES technique aims to avoid the difficulties in scaling up a MAC-E filter-based experiment to achieve a lower mass sensitivity. In this paper we review the current status of the CRES technique and describe Project 8, a phased absolute neutrino mass experiment that has the potential to reach sensitivities down to m(νe)40meVm(\nu_e) \lesssim 40\,{\rm meV} using an atomic tritium source.

Keywords

Cite

@article{arxiv.1703.02037,
  title  = {Determining the neutrino mass with Cyclotron Radiation Emission Spectroscopy - Project 8},
  author = {Ali Ashtari Esfahani and David M. Asner and Sebastian Böser and Raphael Cervantes and Christine Claessens and Luiz de Viveiros and Peter J. Doe and Shepard Doeleman and Justin L. Fernandes and Martin Fertl and Erin C. Finn and Joseph A. Formaggio and Daniel Furse and Mathieu Guigue and Karsten M. Heeger and A. Mark Jones and Kareem Kazkaz and Jared A. Kofron and Callum Lamb and Benjamin H. LaRoque and Eric Machado and Elizabeth L. McBride and Michael L. Miller and Benjamin Monreal and Prajwal Mohanmurthy and James A. Nikkel and Noah S. Oblath and Walter C. Pettus and R. G. Hamish Robertson and Leslie J. Rosenberg and Gray Rybka and Devyn Rysewyk and Luis Saldaña and Penny L. Slocum and Matthew G. Sternberg and Jonathan R. Tedeschi and Thomas Thümmler and Brent A. VanDevender and Laura E. Vertatschitsch and Megan Wachtendonk and Jonathan Weintroub and Natasha L. Woods and André Young and Evan M. Zayas},
  journal= {arXiv preprint arXiv:1703.02037},
  year   = {2017}
}

Comments

19 pages, 8 figures, to be published in Journal of Physics G