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Enhancing the light yield of He:CF 4 based gaseous detector.

Authors :
Amaro FD
Antonietti R
Baracchini E
Benussi L
Bianco S
Campagnola R
Capoccia C
Caponero M
Cardoso DS
de Carvalho LGM
Cavoto G
Costa IA
Croce A
Dané E
Dho G
Di Giambattista F
Di Marco E
D'Astolfo M
D'Imperio G
Fiorina D
Iacoangeli F
Islam ZU
Lima Jùnior HP
Kemp E
Maccarrone G
Mano RDP
Marcelo Gregorio RR
Marques DJG
Mazzitelli G
McLean AG
Messina A
Meloni P
Monteiro CMB
Nobrega RA
Pains IF
Paoletti E
Passamonti L
Petrucci F
Piacentini S
Piccolo D
Pierluigi D
Pinci D
Prajapati A
Renga F
Roque RJDC
Rosatelli F
Russo A
Dos Santos JMF
Saviano G
Silva PAOC
Spooner NJC
Tesauro R
Tomassini S
Torelli S
Source :
The European physical journal. C, Particles and fields [Eur Phys J C Part Fields] 2024; Vol. 84 (10), pp. 1122. Date of Electronic Publication: 2024 Oct 29.
Publication Year :
2024

Abstract

The CYGNO experiment aims to build a large ( O ( 10 ) m 3 ) directional detector for rare event searches, such as nuclear recoils (NRs) induced by dark matter (DM), such as weakly interactive massive particles (WIMPs). The detector concept comprises a time projection chamber (TPC), filled with a He:CF 4 60/40 scintillating gas mixture at room temperature and atmospheric pressure, equipped with an amplification stage made of a stack of three gas electron multipliers (GEMs) which are coupled to an optical readout. The latter consists in scientific CMOS (sCMOS) cameras and photomultipliers tubes (PMTs). The maximisation of the light yield of the amplification stage plays a major role in the determination of the energy threshold of the experiment. In this paper, we simulate the effect of the addition of a strong electric field below the last GEM plane on the GEM field structure and we experimentally test it by means of a 10 × 10 cm 2 readout area prototype. The experimental measurements analyse stacks of different GEMs and helium concentrations in the gas mixture combined with this extra electric field, studying their performances in terms of light yield, energy resolution and intrinsic diffusion. It is found that the use of this additional electric field permits large light yield increases without degrading intrinsic characteristics of the amplification stage with respect to the regular use of GEMs.<br /> (© The Author(s) 2024.)

Details

Language :
English
ISSN :
1434-6044
Volume :
84
Issue :
10
Database :
MEDLINE
Journal :
The European physical journal. C, Particles and fields
Publication Type :
Academic Journal
Accession number :
39479476
Full Text :
https://doi.org/10.1140/epjc/s10052-024-13471-5