Tesi
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Douglas Adam. Search for Triple-Proton Decay Using Machine Learning With CUORE. University of South Carolina (2022).
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Valentina Dompè. Search for neutrinoless double beta decay of 128Te with the CUORE experiment. Gran Sasso Science Institute (2021).
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Alice Campani. The search for neutrinoless double beta decay of 130Te and 120Te with the CUORE experiment. Università degli studi di Genova (2021).
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Roger Huang. Searching for 0νββ Decay with CUORE and CUPID. University of California, Berkeley (2021).
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Guido Fantini. Search for Double Beta Decay of 130Te to the 0+ States of 130Xe with the CUORE Experiment. Gran Sasso Science Institute (2020).
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Irene Nutini. The CUORE experiment: detector optimization and modelling and CPT conservation limit. Gran Sasso Science Institute (2019).
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Christopher James Davis. Search for Neutrinoless Double-Beta Decay with Majoron Emission in CUORE. Yale University (2019).
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Laura Marini. The CUORE experiment: from the commissioning to the first 0νββ limit. Università Degli Studi di Genova (2018).
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Alexey Drobizhev. Searching for the 0\nu\beta\beta Decacy of 130Te with the Ton-Scale CUORE Bolometer Array. University of California-Berkeley (2018).
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Paolo Carniti. Electronic Instrumentations for High Energy Particle Physics and Neutrino Physics. Università degli Studi di Milano-Bicocca (2018).
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Jeremy S. Cushman. A search for neutrinoless double-beta decay in tellurium-130 with CUORE. Yale University (2018).
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Daria Santone. Pulse Shape Analysis of CUORE-0 Bolometers for a Better Comprehension of Detector Response. Università degli Studi dell'Aquila (2017).
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Stefano Pozzi. Search for double-beta decay of 130Te to the excited states of 130Xe in CUORE-0. Università degli Studi di Milano-Bicocca (2017).
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Lorenzo Cassina. Detectors and equipment for Neutrino and High Energy Physics. Università degli Studi di Milano-Bicocca (2017).
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Simone Copello. Dark Matter induced annual modulation analysis in CUORE-0. Università degli Studi di Genova (2017).
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Stefano Dell'Oro. Optimization of the CUORE detector during the commissioning phase. Gran Sasso Science Institute (2017).
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Nicholas I. Chott. Rare event searches with CUORE style TeO₂ bolometers. University of South Carolina (2016).
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Brian Xiaoyu Zhu. Background model and a measurement of the 2νββ decay rate in Te-130 with CUORE-0. University of California, Los Angeles (2016).
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Gabriele Piperno. Dark Matter search with the CUORE-0 experiment. Sapienza – Università di Roma (2015).
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Jonathan L. Ouellet. The Search for 0νββ Decay in Te-130 with CUORE-0. University of California, Berkeley (2015).
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Barbara S. Wang. Cosmogenic Activation of TeO₂ in the Neutrinoless Double-Beta Decay Experiment CUORE. University of California, Berkeley (2014).
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Larissa M. Ejzak. Energy Calibration for a Sensitive Search for Neutrinoless Double-Beta Decay: Using the Cuoricino Experience to Prepare for CUORE. University of Wisconsin – Madison (2013).
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Matteo Biassoni. The CUORE potential as a coherent interaction based observatory for supernova neutrinos. Università degli Studi di Milano-Bicocca (2013).
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Lucia Canonica. The road to the CUORE experiment: research and development for an extremely low background bolometer array. Università degli Studi di Genova (2012).
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Laura Kogler. A measurement of the 2 neutrino double beta decay rate of Te-130 in the CUORICINO experiment. University of California, Berkeley (2011).
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Claudia Rusconi. Optimisation of the bolometric performances of the CUORE-0/CUORE and LUCIFER detectors for the neutrinoless double beta decay search. Università degli Studi dell'Insubria (2011).
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Luca Gironi. Development of cryogenic detectors for rare event searches. Università degli Studi di Milano-Bicocca (2011).
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Cecilia G. Maiano. Analysis of surface radioactive background contribution and study of rare decays in the CUORE experiment. Università degli Studi di Milano-Bicocca (2011).
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Marco Carrettoni. Data analysis for Neutrinoless Double Beta Decay. Università degli Studi di Milano-Bicocca (2011).
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Filippo Orio. Dark Matter search with bolometric detectors. Sapienza – Università di Roma (2010).
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Chiara Salvioni. Optimization of the Single Module of Detection for the CUORE-0 Experiment. Università degli Studi dell'Insubria (2010).
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Adam D. Bryant. A Search for Neutrinoless Double Beta Decay of Te-130. University of California, Berkeley (2010).
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Marco Vignati. Model of the Response Function of the CUORE Bolometers. Sapienza – Università di Roma (2009).
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Erica Andreotti. Application of doped semiconductor devices to the development of bolometric detectors to be used in experiments for the measurement of the ν mass. Università degli Studi dell'Insubria (2009).
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Sergio Di Domizio. Search for double beta decay to excited states with CUORICINO and data acquisition system for CUORE. Università degli Studi di Genova (2009).
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Michelle J. Dolinski. Neutron Interaction in the CUORE Neurinoless Double Beta Decay Experiment. University of California, Berkeley (2008).
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Andrea Giachero. Characterization of cryogenic bolometers and data acquisition system for the CUORE experiment. Università degli Studi di Genova (2008).
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Samuele Sangiorgio. Advanced Detector Technologies for the CUORE experiment. Università degli Studi dell'Insubria (2007).
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Elena Guardincerri. Sviluppo del sistema di acquisizione per CUORE e analisi di eventi a bassa energia in Cuoricino. Università degli Studi di Genova (2006).
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Paolo Gorla. Optimization of the CUORE detector performance. Università degli Studi di Milano-Bicocca (2006).
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Iulian C. Bandac. A search for 2νββ-decay of Te-130 to the first excited 0+ state in Xe-130 with the CUORICINO detector. University of South Carolina (2006).
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Silvia Capelli. Background analysis of the experiments MiDBD, CUORICINO and CUORE. Università degli Studi di Milano (2005).
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Edoardo Pasca. Low temperature properties of neutron transmutation doped germanium. Università degli Studi di Firenze (2004).
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Marisa Pedretti. The single module for Cuoricino and CUORE detectors: tests, construction and modelling. Università degli Studi dell'Insubria (2004).