24 citations · 90 across the 11 of their papers we have counts for
14 papers
Dark Matter Sensitivity of the CYGNO Detector with HFO-1234ze Enhanced Gas Mixtures
F. D. Amaro, R. Antonietti, E. Baracchini +42
The CYGNO collaboration introduces an innovative approach to direct dark matter detection, proposing a high-resolution optical Time Projection Chamber. It operates at atmospheric p…
He-CF4-CH4 ternary mixtures as target gas for the CYGNO directional dark matter experiment
F. D. Amaro, R. Antonietti, E. Baracchini +41
The CYGNO collaboration is advancing a high-resolution optical Time Projection Chamber (TPC) for directional dark matter searches and solar neutrino spectroscopy at LNGS. The detec…
Characterization of cutting-edge CMOS Active Pixel sensors within the CYGNO Experiment
B. D. Almeida, F. D. Amaro, R. Antonietti +43
Time Projection Chambers equipped with Gas Electron Multipliers and optical readout by scientific CMOS cameras are a promising technology for low-energy particle detection, as demo…
Characterization of field cage and cathode for low radioactivity operation with the CYGNO experiment
F. D. Amaro, R. Antonietti, E. Baracchini +48
Dark matter, which is considered to account for approximately the 27% of the Universe's energy-mass content, remains an open issue in modern particle physics along with its composi…
Charge Amplification in Low Pressure CF4:SF6:He Mixtures with a Multi-Mesh ThGEM for Directional Dark Matter Searches
F. D. Amaro, E. Baracchini, L. Benussi +46
The CYGNO collaboration is developing next generation directional Dark Matter (DM) detection experiments, using gaseous Time Projection Chambers (TPCs), as a robust method for iden…
Multiple scattering of channeled and non-channeled positively charged particles in bent monocrystalline silicon
W. Scandale, G. Arduini, F. Cerutti +39
We present the results of an experimental study of multiple scattering of positively charged high energy particles in bent samples of monocrystalline silicon. This work confirms th…