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Quenching factor measurements of neon nuclei in neon gas

Publication ,  Journal Article
Balogh, L; Beaufort, C; Brossard, A; Caron, JF; Chapellier, M; Coquillat, JM; Corcoran, EC; Crawford, S; Dastgheibi Fard, A; Deng, Y; Dering, K ...
Published in: Physical Review D
March 1, 2022

The NEWS-G collaboration uses spherical proportional counters (SPCs) to search for weakly interacting massive particles (WIMPs). In this paper, we report the first measurements of the nuclear quenching factor in neon gas at 2 bar using an SPC deployed in a neutron beam at the TUNL facility. The energy-dependence of the nuclear quenching factor is modeled using a simple power law: αEnrβ; we determine its parameters by simultaneously fitting the data collected with the detector over a range of energies. We measured the following parameters in Ne:CH4 at 2 bar: α=0.2801±0.0050 (fit) ±0.0045 (sys) and β=0.0867±0.020 (fit) ±0.006 (sys). Our measurements do not agree with expected values from SRIM or Lindhard theory. We demonstrated the feasibility of performing quenching factor measurements at sub-keV energies in gases using SPCs and a neutron beam.

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Published In

Physical Review D

DOI

EISSN

2470-0029

ISSN

2470-0010

Publication Date

March 1, 2022

Volume

105

Issue

5
 

Citation

APA
Chicago
ICMJE
MLA
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Balogh, L., Beaufort, C., Brossard, A., Caron, J. F., Chapellier, M., Coquillat, J. M., … Runge, J. (2022). Quenching factor measurements of neon nuclei in neon gas. Physical Review D, 105(5). https://doi.org/10.1103/PhysRevD.105.052004
Balogh, L., C. Beaufort, A. Brossard, J. F. Caron, M. Chapellier, J. M. Coquillat, E. C. Corcoran, et al. “Quenching factor measurements of neon nuclei in neon gas.” Physical Review D 105, no. 5 (March 1, 2022). https://doi.org/10.1103/PhysRevD.105.052004.
Balogh L, Beaufort C, Brossard A, Caron JF, Chapellier M, Coquillat JM, et al. Quenching factor measurements of neon nuclei in neon gas. Physical Review D. 2022 Mar 1;105(5).
Balogh, L., et al. “Quenching factor measurements of neon nuclei in neon gas.” Physical Review D, vol. 105, no. 5, Mar. 2022. Scopus, doi:10.1103/PhysRevD.105.052004.
Balogh L, Beaufort C, Brossard A, Caron JF, Chapellier M, Coquillat JM, Corcoran EC, Crawford S, Dastgheibi Fard A, Deng Y, Dering K, Durnford D, Garrah C, Gerbier G, Giomataris I, Giroux G, Gorel P, Gros M, Gros P, Guillaudin O, Hoppe EW, Katsioulas I, Kelly F, Knights P, Kwon L, Langrock S, Lautridou P, Martin RD, Manthos I, Matthews J, Mols JP, Muraz JF, Neep T, Nikolopoulos K, O’Brien P, Piro MC, Samuleev P, Santos D, Savvidis G, Savvidis I, Vazquez De Sola Fernandez F, Vidal M, Ward R, Zampaolo M, An P, Awe C, Barbeau P, Hedges S, Li L, Runge J. Quenching factor measurements of neon nuclei in neon gas. Physical Review D. 2022 Mar 1;105(5).

Published In

Physical Review D

DOI

EISSN

2470-0029

ISSN

2470-0010

Publication Date

March 1, 2022

Volume

105

Issue

5