Experimental determination of the E2 component in the Coulomb dissociation of 8B

T. Kikuchi, T. Motobayashi, N. Iwasa, Y. Ando, M. Kurokawa, S. Moriya, H. Murakami, T. Nishio, J. Ruan, S. Shirato, S. Shimoura, T. Uchibori, Y. Yanagisawa, T. Kubo, H. Sakurai, Takashi Teranishi, Y. Watanabe, M. Ishihara, M. Hirai, T. Nakamura & 7 others S. Kubono, M. Gai, R. France, K. I. Hahn, Th Delbar, P. Lipnik, C. Michotte

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Abstract

Angular distributions of the Coulomb dissociation of 8B in the field of 208Pb at Ein = 51.9 MeV/u were measured at 0° ≤ θ8 ≤ 10° and 0.5 ≤ Erel ≤ 2.25 MeV. The data were analyzed using a quantum mechanical method where E1, E2 and ℓ = 2 nuclear amplitudes are included. Although systematic effects could be large, the extracted E2 components appear to be considerably smaller than any theoretical predictions reported so far.

Original languageEnglish
Pages (from-to)261-266
Number of pages6
JournalPhysics Letters, Section B: Nuclear, Elementary Particle and High-Energy Physics
Volume391
Issue number3-4
DOIs
Publication statusPublished - Jan 16 1997

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angular distribution
dissociation
predictions

All Science Journal Classification (ASJC) codes

  • Nuclear and High Energy Physics

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Experimental determination of the E2 component in the Coulomb dissociation of 8B. / Kikuchi, T.; Motobayashi, T.; Iwasa, N.; Ando, Y.; Kurokawa, M.; Moriya, S.; Murakami, H.; Nishio, T.; Ruan, J.; Shirato, S.; Shimoura, S.; Uchibori, T.; Yanagisawa, Y.; Kubo, T.; Sakurai, H.; Teranishi, Takashi; Watanabe, Y.; Ishihara, M.; Hirai, M.; Nakamura, T.; Kubono, S.; Gai, M.; France, R.; Hahn, K. I.; Delbar, Th; Lipnik, P.; Michotte, C.

In: Physics Letters, Section B: Nuclear, Elementary Particle and High-Energy Physics, Vol. 391, No. 3-4, 16.01.1997, p. 261-266.

Research output: Contribution to journalArticle

Kikuchi, T, Motobayashi, T, Iwasa, N, Ando, Y, Kurokawa, M, Moriya, S, Murakami, H, Nishio, T, Ruan, J, Shirato, S, Shimoura, S, Uchibori, T, Yanagisawa, Y, Kubo, T, Sakurai, H, Teranishi, T, Watanabe, Y, Ishihara, M, Hirai, M, Nakamura, T, Kubono, S, Gai, M, France, R, Hahn, KI, Delbar, T, Lipnik, P & Michotte, C 1997, 'Experimental determination of the E2 component in the Coulomb dissociation of 8B', Physics Letters, Section B: Nuclear, Elementary Particle and High-Energy Physics, vol. 391, no. 3-4, pp. 261-266. https://doi.org/10.1016/S0370-2693(96)01480-3
Kikuchi, T. ; Motobayashi, T. ; Iwasa, N. ; Ando, Y. ; Kurokawa, M. ; Moriya, S. ; Murakami, H. ; Nishio, T. ; Ruan, J. ; Shirato, S. ; Shimoura, S. ; Uchibori, T. ; Yanagisawa, Y. ; Kubo, T. ; Sakurai, H. ; Teranishi, Takashi ; Watanabe, Y. ; Ishihara, M. ; Hirai, M. ; Nakamura, T. ; Kubono, S. ; Gai, M. ; France, R. ; Hahn, K. I. ; Delbar, Th ; Lipnik, P. ; Michotte, C. / Experimental determination of the E2 component in the Coulomb dissociation of 8B. In: Physics Letters, Section B: Nuclear, Elementary Particle and High-Energy Physics. 1997 ; Vol. 391, No. 3-4. pp. 261-266.
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T1 - Experimental determination of the E2 component in the Coulomb dissociation of 8B

AU - Kikuchi, T.

AU - Motobayashi, T.

AU - Iwasa, N.

AU - Ando, Y.

AU - Kurokawa, M.

AU - Moriya, S.

AU - Murakami, H.

AU - Nishio, T.

AU - Ruan, J.

AU - Shirato, S.

AU - Shimoura, S.

AU - Uchibori, T.

AU - Yanagisawa, Y.

AU - Kubo, T.

AU - Sakurai, H.

AU - Teranishi, Takashi

AU - Watanabe, Y.

AU - Ishihara, M.

AU - Hirai, M.

AU - Nakamura, T.

AU - Kubono, S.

AU - Gai, M.

AU - France, R.

AU - Hahn, K. I.

AU - Delbar, Th

AU - Lipnik, P.

AU - Michotte, C.

PY - 1997/1/16

Y1 - 1997/1/16

N2 - Angular distributions of the Coulomb dissociation of 8B in the field of 208Pb at Ein = 51.9 MeV/u were measured at 0° ≤ θ8 ≤ 10° and 0.5 ≤ Erel ≤ 2.25 MeV. The data were analyzed using a quantum mechanical method where E1, E2 and ℓ = 2 nuclear amplitudes are included. Although systematic effects could be large, the extracted E2 components appear to be considerably smaller than any theoretical predictions reported so far.

AB - Angular distributions of the Coulomb dissociation of 8B in the field of 208Pb at Ein = 51.9 MeV/u were measured at 0° ≤ θ8 ≤ 10° and 0.5 ≤ Erel ≤ 2.25 MeV. The data were analyzed using a quantum mechanical method where E1, E2 and ℓ = 2 nuclear amplitudes are included. Although systematic effects could be large, the extracted E2 components appear to be considerably smaller than any theoretical predictions reported so far.

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