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Background Considerations for the 2H(7Be,3H)6Be Experimental Data II: Three-body Continuum
채경육,V. Guimar˜aes 한국물리학회 2015 THE JOURNAL OF THE KOREAN PHYSICAL SOCIETY Vol.67 No.9
The present article reports second background considerations for the experimentally obtained 2H(7Be,3H)6Be differential cross sections. The one-neutron transfer reaction was measured in inverse kinematics by using radioactive 7Be (t1/2 = 53.2 days) beams at the Holifield Radioactive Ion Beam Facility of the Oak Ridge National Laboratory in 2004 in order to search for the resonances in the unbound 6Be nucleus. Resonances in this nucleus would affect the 3He(3He,2p)4He reaction rate of the proton-proton chain occurring in stars such as our sun. The result shows, however, that the direct transfer to 6Be resonances is not particularly strong compared to other reaction channels that can produce tritons in the exit channels. The goals of the present work is to better understand the cross section data from transfer reaction measurements by adopting background considerations using the three-body continuum.
Background Considerations for the 2H(7Be,3H)6Be Experimental Data Using the Phase Space Model
K. Y. Chae,V. Guimaraes 한국물리학회 2014 THE JOURNAL OF THE KOREAN PHYSICAL SOCIETY Vol.65 No.9
The 2H(7Be,3H)6Be reaction was measured at the Holifield Radioactive Ion Beam Facility of theOak Ridge National Laboratory in 2004 to search for the resonances in the unbound 6Be nucleus. The results showed, however, no resonance was evident in the experimental data, which impliedthat the direct transfer to 6Be levels was not particularly strong compared to other reaction mechanismsthat produced tritons in their exit channels. In the present work, theoretical calculationswith background considerations are performed to better understand the cross-section data for the2H(7Be,3H)6Be reaction using the phase space model.