English

Implementation and Optimization of the PTOLEMY Transverse Drift Electromagnetic Filter

Instrumentation and Detectors 2022-05-25 v2 Instrumentation and Methods for Astrophysics

Abstract

The PTOLEMY transverse drift filter is a new concept to enable precision analysis of the energy spectrum of electrons near the tritium beta-decay endpoint. This paper details the implementation and optimization methods for successful operation of the filter. We present the first demonstrator that produces the required magnetic field properties with an iron return-flux magnet. Two methods for the setting of filter electrode voltages are detailed. The challenges of low-energy electron transport in cases of low field are discussed, such as the growth of the cyclotron radius with decreasing magnetic field, which puts a ceiling on filter performance relative to fixed filter dimensions. Additionally, low pitch angle trajectories are dominated by motion parallel to the magnetic field lines and introduce non-adiabatic conditions and curvature drift. To minimize these effects and maximize electron acceptance into the filter, we present a three-potential-well design to simultaneously drain the parallel and transverse kinetic energies throughout the length of the filter. These optimizations are shown, in simulation, to achieve low-energy electron transport from a 1 T iron core (or 3 T superconducting) starting field with initial kinetic energy of 18.6 keV drained to <10 eV (<1 eV) in about 80 cm. This result for low field operation paves the way for the first demonstrator of the PTOLEMY spectrometer for measurement of electrons near the tritium endpoint to be constructed at the Gran Sasso National Laboratary (LNGS) in Italy.

Keywords

Cite

@article{arxiv.2108.10388,
  title  = {Implementation and Optimization of the PTOLEMY Transverse Drift Electromagnetic Filter},
  author = {A. Apponi and M. G. Betti and M. Borghesi and A. Boscá and F. Calle and N. Canci and G. Cavoto and C. Chang and W. Chung and A. G. Cocco and A. P. Colijn and N. D'Ambrosio and N. de Groot and M. Faverzani and A. Ferella and E. Ferri and L. Ficcadenti and P. Garcia-Abia and G. Garcia Gomez-Tejedor and S. Gariazzo and F. Gatti and C. Gentile and A. Giachero and Y. Hochberg and Y. Kahn and A. Kievsky and M. Lisanti and G. Mangano and L. E. Marcucci and C. Mariani and J. Martínez and M. Messina and E. Monticone and A. Nucciotti and D. Orlandi and F. Pandolfi and S. Parlati and J. Pedrós and C. Pérez de los Heros and O. Pisanti and A. D. Polosa and A. Puiu and I. Rago and Y. Raitses and M. Rajteri and N. Rossi and K. Rozwadowska and I. Rucandio and A. Ruocco and R. Santorelli and C. F. Strid and A. Tan and C. G. Tully and M. Viviani and U. Zeitler and F. Zhao},
  journal= {arXiv preprint arXiv:2108.10388},
  year   = {2022}
}

Comments

29 pages, 25 figures

R2 v1 2026-06-24T05:21:37.978Z