By A. Ohnishi, N. Itagaki, Y. Kanada-En'Yo, K. Kato
This court cases quantity contains the entire invited talks and oral shows on the foreign Symposium on Clustering points of Quantum Many-Body platforms, 12-14 November 2001, held in Kyoto, Japan. It discusses a number of good points of clustering facets - localization of debris in static and dynamical contexts - of nuclear and atomic platforms. It additionally provides many theoretical advancements in quantum few-body and many-body difficulties. The paintings might be worthy to graduate scholars and researchers within the box of quantum many-body difficulties, in particular to people who are looking to comprehend the method houses past the mean-field description.
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Extra info for Clustering Aspects of Quantum Many-Body Systems
A. A. , Phys. Lett. B343(1995)53. 2. M. Freer et al, Phys. Rev. Lett. 82, 1383 (1999); M. , Phys. Rev. C63, 034301 (2001). 3. M. Ito and Y. Sakuragi, Phys. Rev. C62, 064310 (2000). 4. Y. Kanada-En'yo and H. Horiuchi, Nucl. Phys. A687 (2001) 146c; Y. Kanada-En'yo and H. Horiuchi, ENAM2001, Hameenlinna, Finland, 2001. 5. P. Descouvemont and D. Baye, Phys. Lett. B505 (2001) 71. M. Freer, Nucl. Instrum. Meth. Phys. Res. A383 (1996) 463. ANALYSIS OF n B e IN THE 10 Be + n M O D E L RYUSUKE SUZUKI, TAKAYUKI MYO, KIYOSHI KATO Division of Physics, Graduate School of Science, Hokkaido University, Sapporo 060-0810, Japan E-mail: ryusukeQnucl.
The cross section was estimated to be a = 4 ± 1 /xb. Additional support for this interpretation is found in a-7-n coincidences, for which 30 events were observed14 (open symbols, Fig. 3c). Finally, d-7 coincidences presenting a peak in the 7-ray energy spectrum, at Ej ~21 MeV, were also observed (Fig. 3e). The relatively low statistics arose from the limited acceptances of the spectrometer for deuterons (Fig. 3f). The predictions for n(p,7)d QFC on a halo neutron present a peak at 19 MeV (Fig. 3e) - the small shift may be attributable to the strong kinematic correlation between the deuteron momentum and the photon energy, as the detection of only a small fraction of the deuterons is predicted 14 .
Acknowledgments I would like to underline the leading roles played by Martin Freer (molecular states), Emmanuel Sauvan and Miguel Marques (radiative capture). It is a pleasure also to thank the members of the E281 and E302 collaborations for their efforts and the SPEG crew for developing the hydrogen target. References 1. 2. 3. 4. 5. 6. 7. 8. 9. 10. 11. 12. 13. 14. 15. 16. 17. 18. 19. 20. 21. 22. 23. K. Ikeda, Prog. Theor. Phys. (Japan) Suppl. (1968) 464 M. , Prog. Theor. Phys. (Japan) 65 (1968) 205 Y.
Clustering Aspects of Quantum Many-Body Systems by A. Ohnishi, N. Itagaki, Y. Kanada-En'Yo, K. Kato