Doppler shift as a tool for studies of isobaric analog states of neutron-rich nuclei: application to 7He

We have developed a new technique to study exotic neutron-rich nuclei via their isobaric analog states (IAS). We populate high-isospin states in resonant reactions of radioactive ion beams with protons. Characteristic gamma rays emitted from excited decay products were used to identify the populatio...

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Veröffentlicht in:Physical review letters 2005-09, Vol.95 (13), p.132502-132502
Hauptverfasser: Boutachkov, P, Rogachev, G V, Goldberg, V Z, Aprahamian, A, Becchetti, F D, Bychowski, J P, Chen, Y, Chubarian, G, DeYoung, P A, Kolata, J J, Lamm, L O, Peaslee, G F, Quinn, M, Skorodumov, B B, Wöhr, A
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container_end_page 132502
container_issue 13
container_start_page 132502
container_title Physical review letters
container_volume 95
creator Boutachkov, P
Rogachev, G V
Goldberg, V Z
Aprahamian, A
Becchetti, F D
Bychowski, J P
Chen, Y
Chubarian, G
DeYoung, P A
Kolata, J J
Lamm, L O
Peaslee, G F
Quinn, M
Skorodumov, B B
Wöhr, A
description We have developed a new technique to study exotic neutron-rich nuclei via their isobaric analog states (IAS). We populate high-isospin states in resonant reactions of radioactive ion beams with protons. Characteristic gamma rays emitted from excited decay products were used to identify the population of the IAS. We show that information on the differential and total cross section for formation of the IAS can be extracted from the energy spectrum of the Doppler-shifted gamma rays. This technique was applied to the study of T=3/2 states in 7Li, which are analogs of states in 7He. The analog of the 7He ground state was clearly observed, whereas the presence of the analog of a narrow 1/2(-) state at 0.6 MeV excitation in 7He reported by M. Meister et al. [Phys. Rev. Lett. 88, 102501 (2002)] was excluded at the 90% confidence level. Evidence is presented for a broad 1/2(-) state at a higher excitation energy in 7He.
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title Doppler shift as a tool for studies of isobaric analog states of neutron-rich nuclei: application to 7He
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