The CYGNO Experiment
Fernando Domingues Amaro, Elisabetta Baracchini, Luigi Benussi,, Stefano Bianco, Cesidio Capoccia, Michele Caponero, Danilo Santos Cardoso,, Gianluca Cavoto, Andr\'e Cortez, Igor Abritta Costa, Rita Joanna da Cruz, Roque, Emiliano Dan\'e, Giorgio Dho, Flaminia Di Giambattista

TL;DR
The CYGNO experiment develops a gaseous TPC with optical readout using GEMs and high-resolution cameras to detect low-energy nuclear and electron recoils, aiming to advance dark matter and neutrino detection with directional sensitivity.
Contribution
It introduces a novel optical readout approach for large volume TPCs using GEMs and high-resolution cameras for rare event detection.
Findings
High sensitivity to keV energy events demonstrated
3D track reconstruction achieved with optical readout
Good particle discrimination between nuclear and electronic recoils
Abstract
The search for a novel technology able to detect and reconstruct nuclear and electron recoil events with the energy of a few keV has become more and more important now that large regions of high-mass dark matter (DM) candidates have been excluded. Moreover, a detector sensitive to incoming particle direction will be crucial in the case of DM discovery to open the possibility of studying its properties. Gaseous time projection chambers (TPC) with optical readout are very promising detectors combining the detailed event information provided by the TPC technique with the high sensitivity and granularity of latest-generation scientific light sensors. The CYGNO experiment (a CYGNus module with Optical readout) aims to exploit the optical readout approach of multiple-GEM structures in large volume TPCs for the study of rare events as interactions of low-mass DM or solar neutrinos. The…
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