The 20O nucleus represents an interesting case of study. In this nucleus, the spectroscopic properties of the 2+2 and 3+1 states are influenced by the contribution of the three-body forces. Hence, lifetime measurements of these states can provide meaningful information on the role of three body forces in this nucleus. An experiment aimed at measuring the lifetime of 2+2 and 3+1 states of 20O using the Doppler Shift Attenuation method was performed at GANIL, using the AGATA array coupled to the MUGAST array and the VAMOS spectrometer. The lifetimes of the states were extracted by comparing the experimental data with Monte Carlo simulations. A preliminary theoretical interpretation seems to confirm the importance of the three-body forces in the structure of this region.
Il 20O rappresenta un caso di studio interessante. In questo nucleo, le proprietà spettroscopiche degli stati 2+2 e 3+1 sono influenzate dal contributo delle forze a tre corpi. Di conseguenza, misure di vita media di questi stati possono fornire informazioni preziose sul ruolo delle forze a tre corpi in questo nucleo. Un esperimento dedicato alle misure di vita media degli stati 2+2 e 3+1 del 20O utilizzando il metodo DSAM è stato svolto a GANIL, utilizzando l'array AGATA accoppiato con l'array MUGAST e lo spettrometro VAMOS. Le vite medie degli stati sono state estratte comparandole con delle simulazioni Monte Carlo. Una prima interpretazione teorica sembra confermare l'importanza delle forze a tre corpi nella struttura di questa regione.
Testing three-body forces in light nuclei: Lifetime measurements in 20O in the femtosecond range
ZANON, Irene
2022
Abstract
The 20O nucleus represents an interesting case of study. In this nucleus, the spectroscopic properties of the 2+2 and 3+1 states are influenced by the contribution of the three-body forces. Hence, lifetime measurements of these states can provide meaningful information on the role of three body forces in this nucleus. An experiment aimed at measuring the lifetime of 2+2 and 3+1 states of 20O using the Doppler Shift Attenuation method was performed at GANIL, using the AGATA array coupled to the MUGAST array and the VAMOS spectrometer. The lifetimes of the states were extracted by comparing the experimental data with Monte Carlo simulations. A preliminary theoretical interpretation seems to confirm the importance of the three-body forces in the structure of this region.File | Dimensione | Formato | |
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https://hdl.handle.net/20.500.14242/72599
URN:NBN:IT:UNIFE-72599