Measurements of the ionization efficiency of protons in methane
Abstract
The amount of energy released by a nuclear recoil ionizing the atoms of the active volume of detection appears "quenched" compared to an electron of the same kinetic energy. This different behavior in ionization between electrons and nuclei is described by the Ionization Quenching Factor (IQF) and it plays a crucial role in direct dark matter searches. For low kinetic energies (below ), IQF measurements deviate significantly from common models used for theoretical predictions and simulations. We report measurements of the IQF for proton, an appropriate target for searches of Dark Matter candidates with a mass of approximately 1 GeV, with kinetic energies in between and in of methane. We used the Comimac facility in order to produce the motion of nuclei and electrons of controlled kinetic energy in the active volume, and a NEWS-G SPC to measure the deposited energy. The Comimac electrons are used as reference to calibrate the detector with 7 energy points. A detailed study of systematic effects led to the final results well fitted by with and . In agreement with some previous works in other gas mixtures, we measured less ionization energy than predicted from SRIM simulations, the difference reaching at
Keywords
Cite
@article{arxiv.2201.09566,
title = {Measurements of the ionization efficiency of protons in methane},
author = {G Collaboration and L. Balogh and C. Beaufort and A. Brossard and J. -F. Caron and M. Chapellier and J. -M. Coquillat and E. C. Corcoran and S. Crawford and A. Dastgheibi-Fard and Y. Deng and K. Dering and D. Durnford and C. Garrah and G. Gerbier and I. Giomataris and G. Giroux and P. Gorel and M. Gros and P. Gros and O. Guillaudin and E. W. Hoppe and I. Katsioulas and F. Kelly and P. Knights and S. Langrock and P. Lautridou and I. Manthos and R. D. Martin and J. Matthews and J. -P. Mols and J. -F. Muraz and T. Neep and K. Nikolopoulos and P. O'Brien and M. -C. Piro and D. Santos and G. Savvidis and I. Savvidis and F. Vazquez de Sola Fernandez and M. Vidal and R. Ward and M. Zampaolo},
journal= {arXiv preprint arXiv:2201.09566},
year = {2023}
}
Comments
12 pages, 9 figures