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O. Ponkratenko

Publications and source records attributed to O. Ponkratenko.

2 recordsLinked to original sources

First measurement of the 2.4 and 2.9 MeV $^6$He three-cluster resonant states via the $^3$H($^4$He,p$α$)2n four-body reaction

Two new low-lying $^6$He levels at excitation energies of about 2.4 and 2.9 MeV were observed in the experimental investigation of the p-$α$ coincidence spectra obtained by the $^3$H($^4$He,p$α$)2n four-body reaction at $E_{\rm \,^4He}$ beam energy of 27.2 MeV. The relevant $E^*$ peak energy and $Γ$ energy width spectroscopic parameters for such $^6$He$^*$ excited states decaying into the $α$+n+n channel were obtained by analyzing the bidimensional ($E_{\rm p}$, $E_{\rm α}$) energy spectra. The present new result of two low-lying $^6$He$^*$ excited states above the $^4$He+2n threshold energy of 0.974 MeV is important for the investigation of the nuclear structure of neutron rich light nuclei and also as a basic test for theoretical models in the study of the three-cluster resonance feature of $^6$He.

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Experimental evidence of the $^6$He level at $E^*$ = 18.3 MeV by the $^4$He+$^3$H three-body reaction

Measurements of the t-t and p-t coincidence events in the $^3$H ($α$, ttp) reaction have been obtained at $E_α$ incident energy of 67.2 MeV. Various appropriate angular configurations of detectors were chosen in order to observe the population of the $^6$He$^*$ state at around 18 MeV. Its contribution appears at the $E_{\rm tt}$ relative energy of 6.0 MeV by the analysis of bidimensional spectra. We found the formation of the $^6$He excited state at $E^* = 18.3 \pm 0.2$ MeV (with a $Γ$ width of 1.1 $\pm$ 0.3 MeV) by the decay into the t+t binary channel, since the threshold energy of the t+t channel is 12.31 MeV. In each analyzed bidimensional energy spectrum of ($E_{\rm t}$, $E_{\rm t}$) and ($E_{\rm p}$, $E_{\rm t}$) coincidence events resonance structures are present due to the formation of both $^6$He$^*$ and $^4$He$^*$ excited states. Our results on the $E^*$ and $Γ$ values regarding the $^6$He$^*$ level of about 18 MeV are compared with the results obtained by other reactions. Moreover, we also found new $Γ$ width values of 0.7 $\pm$ 0.3 and 0.8 $\pm$ 0.4 MeV for the 14.0 $\pm$ 0.4 and 16.1 $\pm$ 0.4 MeV $^6$He levels, respectively.

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