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Giovanna Saleh

Publications and source records attributed to Giovanna Saleh.

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First results from LEGEND-200: searching for $0νββ$ decay in $^{76}$Ge

The LEGEND Experiment searches for the neutrinoless double beta (0$νββ$) decay of $^{76}$Ge employing active high purity germanium detectors enriched in $^{76}$Ge beyond 86%. LEGEND's experimental program is articulated in two phases: LEGEND-200, currently ongoing, and LEGEND-1000, the next generation development. LEGEND-200 started operating in 2023 at Laboratori Nazionali del Gran Sasso (LNGS) and ran in a stable physics data taking regime for about one year with 142.5 kg of detectors installed. With a target background index of $2 \cdot 10^{-4} $ counts/(keV kg yr) at Q$_{ββ} \sim$ 2039 keV and a final exposure of 1000 kg yr, LEGEND-200 aims to reach a 3$σ$ discovery sensitivity for a 0$νββ$ half-life of $10^{27}$ yr. In this contribution, the LEGEND-200 experiment will be presented, with a focus on its current status and on the results obtained with the first year of data. In particular, the employed analysis routines will be introduced, the signal identification and background suppression performance will be discussed, and the background appearing in the region of interest around $Q_{ββ}$ will be analyzed. The performed analysis of LEGEND-200 data finds no evidence for a 0$νββ$ signal: a lower limit to its half-life is set instead, $T_{1/2}^{0ν} > 0.5 \cdot 10^{26}$ yr, at 90% CL. A joint GERDA + MAJORANA Demonstrator + LEGEND-200 analysis provides a limit of $T_{1/2}^{0ν} > 1.9 \cdot 10^{26}$ yr, at 90% CL. This work is supported by the U.S. DOE and the NSF, the LANL, ORNL and LBNL LDRD programs; the European ERC and Horizon programs; the German DFG, BMBF, and MPG; the Italian INFN; the Polish NCN and MNiSW; the Czech MEYS; the Slovak RDA; the Swiss SNF; the UK STFC; the Canadian NSERC and CFI; the LNGS and SURF facilities.

hep-ex

First results from LEGEND-200 on the search for neutrinoless double beta decay

Neutrinoless double beta decay ($0νββ$) is a rare process which could take place if neutrinos are Majorana fermions: the observation of this decay would provide unambiguous evidence for the existence of new Physics beyond the Standard Model, as it entails a two-units lepton number violation. The LEGEND experiment (Large Enriched Germanium Experiment for Neutrinoless $ββ$ Decay) searches for the $0νββ$ of $^{76}$Ge using High Purity Germanium detectors enriched in $^{76}$Ge beyond the 86%. The LEGEND project foresees two phases, LEGEND-200, aiming at a final 3$σ$ discovery sensitivity beyond 10$^{27}$ yr, and LEGEND-1000, aiming at a final sensitivity beyond 10$^{28}$ yr. LEGEND-200 started taking data in 2023 at Laboratori Nazionali del Gran Sasso (LNGS): in about one year it collected a total physics exposure of 61 kg yr, with a background index of $0.5^{+0.3}_{-0.2} \cdot 10^{-3}$ counts/(keV kg yr) in the so-called "golden dataset" and of $1.3^{+0.8}_{-0.5} \cdot 10^{-3}$ counts/(keV kg yr) in the so-called "silver dataset". The performed statistical analysis finds no evidence for a $0νββ$ signal and sets a lower limit on its half life to $T_{1/2}^{0ν} > 0.5 \cdot 10^{26}$ yr at 90% CL. A combined analysis of the three germanium-based $0νββ$ experiments GERDA, MAJORANA Demonstrator and LEGEND-200 provides a lower limit of $T_{1/2}^{0ν} > 1.9 \cdot 10^{26}$ yr at 90% CL.

nucl-ex