Probable alpha and ^C cluster emission from hyper Ac nuclei
arXiv:1311.2280 · doi:10.1140/epja/i2013-13127-3
Abstract
A systematic study on the probability for the emission of 4^He and 14^C cluster from hyper ${207-234}^$Ac and non-strange normal ${207-234}^$Ac nuclei are performed for the first time using our fission model, the Coulomb and proximity potential model (CPPM). The predicted half lives show that hyper ${207-234}^$Ac nuclei are unstable against 4^He emission and 14^C emission from hyper ${217-228}^$Ac are favorable for measurement. Our study also show that hyper ${207-234}^$Ac are stable against hyper 4^He and 14^C emission. The role of neutron shell closure (N=126) in hyper 214^Fr daughter and role of proton/ neutron shell closure (Z =82, N =126) in hyper 210^Bi daughter are also revealed. As hyper-nuclei decays to normal nuclei by mesonic/non-mesonic decay and since most of the predicted half lives for 4^He and 14^C emission from normal Ac nuclei are favourable for measurement, we presume that alpha and 14^C cluster emission from hyper Ac nuclei can be detected in laboratory in a cascade (two-step) process.
28 pages, 5 figures
References in corpus (6)
- Cluster decay half lives of trans-lead nuclei within the Coulomb and proximity potential model
- Shape of Lambda hypernuclei in (beta,gamma) deformation plane
- High Resolution Spectroscopy of 12B_Lambda by Electroproduction
- Lambda hyperonic effect on the normal driplines
- Constraints on the threshold K- nuclear potential from FINUDA (stopped K-, pi-) hypernuclear spectra
- Relation between shrinkage effect and compression of rotational spectrum in Li hypernucleus