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Dr Simone Bottoni (University of Milano and INFN)08/09/2026, 09:00
Existing data on quadrupole strength in 8Li exceed ab initio calculations by more than an order of magnitude, which, in turn, reproduce accurately B(E2) values in nearby A= 7−9 few-body nuclei, including large values classically associated with molecular rotations of nucleon clusters. If correct, such an enhanced quadrupole strength would be an anomaly in this mass region since it does not...
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Jeongsu Ha (Center for Exotic Nuclear Studies, Institute for Basic Science)08/09/2026, 09:15
Following the experiment EXP. 22. 72, which aimed to measure the 10C superallowed beta-decay branching ratio (BR), the new experiment had been suggested based on the improvement of the experimental setup. The increase in the maximum validation rate of AGATA from 1 kHz to 4 kHz per crystal enables us to obtain a four-fold increase in the statistics. In addition, the relay of the beam switching...
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Elia Pilotto (INFN - LNL)08/09/2026, 09:30
Lifetime measurement of astrophysically relevant 6.79 MeV state in Oxygen-15 with sub-fs precision.
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Federico Simioni (UNIPD, INFN LNL)08/09/2026, 09:45
Inverse beta decay (IBD) is a crucial process historically employed to study neutrinos.
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For example, discrepancies between measured and expected IBD rates on $^{71}$Ga, the so-called gallium anomaly, suggest the possible existence of sterile neutrinos. A recent publication showed that the poorly known associated Nuclear Matrix Element (NME) can be extracted measuring the decay width from the... -
Damiano Stramaccioni08/09/2026, 10:00
We present the analysis of an experiment performed at INFN LNL in November 2023 aimed at studying the two-octupole phonon collectivity in $^{96}$Zr. The goal of the experiment was to perform a $\gamma$-decay branching ratio measurement from the 6$^+$ to the 3$^-$ state, so as to extract the B(E3; 6$^+$ -> 3$^-$) value. If large, this parameter would indicate for the level to be a member of the...
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Federico Simioni (UNIPD, INFN LNL)08/09/2026, 10:15
The EUCLIDES array is a silicon ΔE-E detector system designed for the detection and identification of charged particles in nuclear physics experiments, and has been extensively used as an ancillary detector for $\gamma$-ray spectroscopy. This contribution will provide an overview of the EUCLIDES array, including its detector configuration, main characteristics and coupling with $\gamma$-ray...
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