Identification of low energy nuclear recoils in a gas TPC with optical readout
Elisabetta Baracchini, Luigi Benussi, Stefano Bianco, Cesidio, Capoccia, Michele Arturo Caponero, Gianluca Cavoto, Andre Cortez, Igor, Abritta Costa, Emanuele Di Marco, Giulia D'Imperio, Giorgio Dho, Fabrizio, Iacoangeli, Giovanni Maccarrone, Michela Marafini

TL;DR
This paper demonstrates a gas TPC with optical readout capable of detecting low-energy nuclear recoils with high efficiency and suppression, advancing dark matter detection technology.
Contribution
It introduces a novel optical readout method for gas TPCs with Gas Electron Multipliers, achieving effective discrimination of nuclear recoils from electron background.
Findings
18% efficiency for 6 keV nuclear recoils
96% suppression of photo-electrons from 55Fe
Potential for directional dark matter searches
Abstract
The search for a novel technology able to detect and reconstruct nuclear recoil events in the keV energy range has become more and more important as long as vast regions of high mass WIMP-like Dark Matter candidate have been excluded. Gaseous Time Projection Chambers (TPC) with optical readout are very promising candidate combining the complete event information provided by the TPC technique to the high sensitivity and granularity of last generation scientific light sensors. A TPC with an amplification at the anode obtained with Gas Electron Multipliers (GEM) was tested at the Laboratori Nazionali di Frascati. Photons and neutrons from radioactive sources were employed to induce recoiling nuclei and electrons with kinetic energy in the range [1-100] keV. A He-CF4 (60/40) gas mixture was used at atmospheric pressure and the light produced during the multiplication in the GEM channels was…
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