Back to Search Start Over

Unique approach for precise determination of binding energies of hypernuclei with nuclear emulsion and machine learning

Authors :
Nakagawa, M.
Kasagi, A.
Liu, E.
Ekawa, H.
Joshida, J.
Dou, W.
He, Y.
Muneem, A.
Nakazawa, K.
Rappold, Christophe
Saito, N.
Saito, T.R.
Sugimoto. S.
Taki, M.
Tanaka, Y.K.
Wang, H.
Gao, Y.
Yanai, A.
Yoshimoto, M.
Nakagawa, M.
Kasagi, A.
Liu, E.
Ekawa, H.
Joshida, J.
Dou, W.
He, Y.
Muneem, A.
Nakazawa, K.
Rappold, Christophe
Saito, N.
Saito, T.R.
Sugimoto. S.
Taki, M.
Tanaka, Y.K.
Wang, H.
Gao, Y.
Yanai, A.
Yoshimoto, M.
Publication Year :
2022

Abstract

Hypertriton is the lightest hypernucleus and a benchmark in hypernuclear physics. However, it has recently been suggested that its lifetime and binding energy values may differ from the established values. To solve this puzzle, it is necessary to measure both values with a higher precision. For the precise measurement of the binding energy, we are aiming at developing a novel technique to measure the hypertriton binding energy with unprecedented accuracy by combining nuclear emulsion data and machine learning techniques. The analysis will be based on the J-PARC E07 nuclear emulsion data. Furthermore, a machine-learning model is being developed to identify other single and double-strangeness hypernuclei

Details

Database :
OAIster
Publication Type :
Electronic Resource
Accession number :
edsoai.on1442723583
Document Type :
Electronic Resource