First nuclear moment measurement with radioactive beams by recoil-in-vacuum method: g-factor of the 2(1)(+) state in Te-132

Following Coulomb excitation of the radioactive ion beam (RIB) Te-132 at HRIBF, we report the first use of the recoil-in-vacuum (RIV) method to determine the g-factor of the 2(1)(+) state to be (+)0.35(5). The advantages offered by the RIV method in the context of RIBs and modern detector arrays are...

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Main Authors: Stone, N, Stuchbery, A, Danchev, M, Pavan, J, Timlin, C, Baktash, C, Barton, C, Beene, JR, Benczer-Koller, N, Bingham, C, Dupak, J, Galindo-Uribarri, A, Gross, C, Kumbartzki, G, Radford, D, Stone, JR, Zamfir, N
Format: Conference item
Published: 2005
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author Stone, N
Stuchbery, A
Danchev, M
Pavan, J
Timlin, C
Baktash, C
Barton, C
Beene, JR
Benczer-Koller, N
Bingham, C
Dupak, J
Galindo-Uribarri, A
Gross, C
Kumbartzki, G
Radford, D
Stone, JR
Zamfir, N
author_facet Stone, N
Stuchbery, A
Danchev, M
Pavan, J
Timlin, C
Baktash, C
Barton, C
Beene, JR
Benczer-Koller, N
Bingham, C
Dupak, J
Galindo-Uribarri, A
Gross, C
Kumbartzki, G
Radford, D
Stone, JR
Zamfir, N
author_sort Stone, N
collection OXFORD
description Following Coulomb excitation of the radioactive ion beam (RIB) Te-132 at HRIBF, we report the first use of the recoil-in-vacuum (RIV) method to determine the g-factor of the 2(1)(+) state to be (+)0.35(5). The advantages offered by the RIV method in the context of RIBs and modern detector arrays are discussed.
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spelling oxford-uuid:28e20dff-a5ee-4a5d-bd4e-607464b5b87e2022-03-26T12:15:44ZFirst nuclear moment measurement with radioactive beams by recoil-in-vacuum method: g-factor of the 2(1)(+) state in Te-132Conference itemhttp://purl.org/coar/resource_type/c_5794uuid:28e20dff-a5ee-4a5d-bd4e-607464b5b87eSymplectic Elements at Oxford2005Stone, NStuchbery, ADanchev, MPavan, JTimlin, CBaktash, CBarton, CBeene, JRBenczer-Koller, NBingham, CDupak, JGalindo-Uribarri, AGross, CKumbartzki, GRadford, DStone, JRZamfir, NFollowing Coulomb excitation of the radioactive ion beam (RIB) Te-132 at HRIBF, we report the first use of the recoil-in-vacuum (RIV) method to determine the g-factor of the 2(1)(+) state to be (+)0.35(5). The advantages offered by the RIV method in the context of RIBs and modern detector arrays are discussed.
spellingShingle Stone, N
Stuchbery, A
Danchev, M
Pavan, J
Timlin, C
Baktash, C
Barton, C
Beene, JR
Benczer-Koller, N
Bingham, C
Dupak, J
Galindo-Uribarri, A
Gross, C
Kumbartzki, G
Radford, D
Stone, JR
Zamfir, N
First nuclear moment measurement with radioactive beams by recoil-in-vacuum method: g-factor of the 2(1)(+) state in Te-132
title First nuclear moment measurement with radioactive beams by recoil-in-vacuum method: g-factor of the 2(1)(+) state in Te-132
title_full First nuclear moment measurement with radioactive beams by recoil-in-vacuum method: g-factor of the 2(1)(+) state in Te-132
title_fullStr First nuclear moment measurement with radioactive beams by recoil-in-vacuum method: g-factor of the 2(1)(+) state in Te-132
title_full_unstemmed First nuclear moment measurement with radioactive beams by recoil-in-vacuum method: g-factor of the 2(1)(+) state in Te-132
title_short First nuclear moment measurement with radioactive beams by recoil-in-vacuum method: g-factor of the 2(1)(+) state in Te-132
title_sort first nuclear moment measurement with radioactive beams by recoil in vacuum method g factor of the 2 1 state in te 132
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