6533b852fe1ef96bd12ab60a

RESEARCH PRODUCT

β -decay half-lives and β -delayed neutron emission probabilities for several isotopes of Au, Hg, Tl, Pb, and Bi, beyond N=126

Yu. A. LitvinovI. DillmannK. SteigerKarl SmithHans GeisselG. CortesCarlos GuerreroE. WilsonJ. L. TainA. R. GarcíaRoman GernhäuserE. SokolH. SchaffnerN. KurzA. EvdokimovC. Domingo-pardoHelmut WeickS. PietriJ. BenlliureM. MartaD. Cano-ottL. MaierR. Caballero-folchJ. AgramuntF. CalviñoJ. KurcewiczF. MontesA. AlgoraM. BowryT. MartinezA. ProchazkaA. V. YereminC. ParadelaJ. MarganiecF. AmeilM. B. Gómez-hornillosD. GalavizR. KnöbelZs. PodolyákStephen RiceB. RubioC. NociforoBao-hua SunI. KojouharovD. TestovYassid AyyadC. ScheidenbergerR. WoodD. R. NapoliPhilip WoodsMatthias HeilIvan MukhaW. GelletlyF. FarinonA. RiegoM. TakechiC. HinkeA. EstradeJ. S. WinfieldThomas FaestermannThomas Davinson

subject

PhysicsIsotope010308 nuclear & particles physicsBranching fraction01 natural sciences7. Clean energyIon0103 physical sciencesNeutron detectionr-processNeutronAtomic physics010306 general physicss-processDelayed neutron

description

Background: Previous measurements of Beta-delayed neutron emitters comprise around 230 nuclei, spanning from the 8He up to 150La. Apart from 210Tl, with a minuscule branching ratio of 0.07%, no other neutron emitter is measured yet beyond A = 150. Therefore new data are needed, particularly in the heavy mass region around N=126, in order to guide theoretical models and to understand the formation of the third r-process peak at A 195. Purpose: To measure both, Beta-decay half-lives and neutron branching ratios of several neutron-rich Au, Hg, Tl, Pb and Bi isotopes beyond N = 126. Method: Ions of interest are produced by fragmentation of a 238U beam, selected and identifed via the GSI-FRS fragment separator. A stack of segmented silicon detectors (SIMBA) is used to measure ion-implants and -decays. An array of 30 3He tubes embedded in a polyethylene matrix (BELEN) is used to detect neutrons with high efficiency and selectivity. A self-triggered digital system is employed to acquire data and to enable time-correlations. The latter are analyzed with an analytical model and results for the half-lives and neutron-branching ratios are derived using the binned Maximum-Likelihood method. Results: Twenty new Beta-decay half-lives are reported for 204

https://doi.org/10.1103/physrevc.95.064322