collaborators

10 papers

physics.ins-det2026

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…

physics.ins-det2026

Simulation of the CYGNO Gaseous TPC Optical Readout

F. D. Amaro, R. Antonietti, E. Baracchini +41

Gaseous Time Projection Chambers with Optical Readout are sensitive detectors suitable for 3D measurement of low-energy O(1 keV) particles and are proposed for detecting rare event…

physics.ins-det2026

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…

physics.ins-det2026

Fast reconstruction-based ROI triggering via anomaly detection in the CYGNO optical TPC

F. D. Amaro, R. Antonietti, E. Baracchini +41

Optical-readout Time Projection Chambers (TPCs) produce megapixel-scale images whose fine-grained topological information is essential for rare-event searches, but whose size chall…

physics.ins-det2026

Trigger Optimization and Event Classification for Dark Matter Searches in the CYGNO Experiment Using Machine Learning

F. D. Amaro, R. Antonietti, E. Baracchini +40

The CYGNO experiment employs an optical-readout Time Projection Chamber (TPC) to search for rare low-energy interactions using finely resolved scintillation images. While the optic…

physics.ins-det2026

First Optical Observation of Negative Ion Drift at Surface Pressure

F. D. Amaro, R. Antonietti, E. Baracchini +41

We report the first observation of Negative Ion Drift (NID) at surface pressure of mbar at Laboratori Nazionali del Gran Sasso in a He:CF:SF mixture using an op…