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Matteo Martini

Publications and source records attributed to Matteo Martini.

4 recordsLinked to original sources

Self-Supervised ConvLSTM for Fermi Large Area Telescope Transient Detection

We present a framework for detecting transient gamma-ray phenomena in a controlled environment by combining end-to-end simulations of the Fermi-LAT sky with self-supervised spatio-temporal deep learning. We generate a ten-year synthetic Universe with gtobssim and process the simulated events into daily all-sky maps of counts and exposure, obtaining a time-ordered sequence that mirrors the structure of Fermi-LAT observations. To model the nominal evolution of the sky, we employ a Convolutional Long Short-Term Memory (ConvLSTM) network that operates directly on map sequences, preserving spatial locality while learning temporal dependencies. The model is trained to reconstruct expected emission, and departures from the learned baseline are quantified through pixel-wise mean-squared residual maps. We then define statistically motivated anomaly criteria by estimating per-pixel thresholds from the residual distribution on the training set, and we enforce spatial coherence via local filtering to suppress isolated fluctuations. The ConvLSTM is then deployed as trained predictor on Fermi-LAT daily maps, where the sky can depart from the nominal behavior because of genuine astrophysical variability and instrumental non-stationarities. The resulting pipeline flags localized, time-dependent excesses consistent with high-variable sources or transient events (e.g., flares or GRBs) and provides a benchmark for evaluating anomaly-detection strategies on long-duration, Fermi-LAT-like datasets.

astro-ph.HE

Avatar Exposure and Strategic Coordination in Virtual Reality: Evidence from a Threshold Public Goods Experiment

Digital platforms increasingly support collective action initiatives, yet coordinating geographically dispersed users through digital interfaces remains challenging, particularly in threshold settings where success requires critical mass participation. This study investigates how avatar-based social representation in Virtual Reality (VR) influences coordination in threshold collective action problems. Through a randomized controlled experiment with 188 participants organized in 94 pairs, we examine whether brief avatar exposure affects perceived co-presence and coordination outcomes in a two-player threshold public goods game implemented as a real-effort recycling task. We manipulate a single design feature: participants either briefly interact through avatars before the main task (Pre-Task Avatar treatment) or complete an equivalent activity individually without peer visibility (No Pre-Task Avatar treatment). Our findings reveal that minimal avatar exposure significantly increases perceived co-presence and improves strategic coordination, though not through increased contribution quantity. Participants exposed to peer avatars achieve higher social welfare by coordinating to avoid wasteful over-contribution beyond the threshold. Additionally, we identify VR presence-the sense of 'being there' in the virtual environment-as a stronger predictor of task performance than co-presence itself. This research contributes to Information Systems theory by establishing causal pathways from specific design features to presence to coordination outcomes, demonstrates VR as a rigorous experimental methodology for IS research, and provides actionable insights for designing collaborative platforms supporting sustainability initiatives and threshold collective action problems.

cs.HC

The Mu2e crystal and SiPM calorimeter: construction status

The Mu2e experiment at Fermilab searches for the neutrino-less conversion of a negative muon into an electron, with a distinctive signature of a mono-energetic electron with energy of 104.967 MeV. The calorimeter is made of two disks of pure CsI crystals, each read out by two custom large area UV-extended SiPMs. It plays a fundamental role in providing excellent particle identification capabilities and an online trigger filter while improving the track reconstruction, requiring better than 10% energy and 500 ps timing resolutions for 100 MeV electrons. In this paper, we present the status of construction and the Quality Control (QC) performed on the produced crystals and photosensors, the development of the rad-hard electronics, and the most important results of the irradiation tests. Construction of the mechanics is also reported. Status and plans for the calorimeter assembly and its first commissioning are described.

physics.ins-det

First Simultaneous K$^-$p $\rightarrow (\Sigma^0/\Lambda) \, \pi^0$ Cross Sections Measurements at 98 MeV/c

We report the first simultaneous and independent measurements of the K$^{-}$p $\rightarrow \Sigma^0 \, \pi^{0}$ and K$^{-}$p $\rightarrow \Lambda \, \pi^{0}$ cross sections around 100 MeV/c kaon momentum. The kaon beam delivered by the DA$\Phi$NE collider was exploited to detect K$^-$ absorptions on Hydrogen atoms, populating the gas mixture of the KLOE drift chamber. The precision of the measurements ($\sigma_{K^- p \rightarrow \Sigma^0 \pi^0} = 42.8 \pm 1.5 (stat.) ^{+2.4}_{-2.0}(syst.) \ \mathrm{mb}$ and $\sigma_{K^- p \rightarrow \Lambda \pi^0} = 31.0 \pm 0.5 (stat.) ^{+1.2}_{-1.2}(syst.) \ \mathrm{mb}\,$) is the highest yet obtained in the low kaon momentum regime.

nucl-ex