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通过对国际上中能核物理的发展,特别是前沿领域中的现状的回顾,阐述了利用在上海原子核所计划建造的第三代同步辐射加速器(SSRF)上建立新一代的激光-电子康普顿背散射γ射线源(SLEGS) 从事夸克和胶子层次上的中能核物理研究的科学目标及研究内容.

参考文献

[1] Nefkens B M K. Meson-nucleon Physics: Past,present and future[Z]. arXiv: nucl-ex/0202006.
[2] Close F E. Light Hadron Spectroscopy: Theory and experiment[Z]. arXiv: hep-ph/0110081.
[3] Burkert V D. Nucleon Structure in the Resonance Region[Z]. arXiv: nucl-ex/ 0109004.
[4] Joo R,Smith L G,Burkert V D,et al. Q2 Dependence of Quadrupole Strength in the γ*p→Δ(1232)→pπ0 Transition[Z]. arXiv: hep-ex/0110007.
[5] Beck R,Leukel R,Schmidt A. New Results and Future Plans with Real Photons at MAMI[C].TAPS workshop VI,Krzyze: Poland,2001.
[6] Drell S D,Hearn A C. Exact Sum Rule for Nucleon Magnetic Moments[J]. Phys Rev Lett,1966,16 (20): 908.
[7] Ahrens J,Altieri S,Annand J R M,et al. First Measurement of the Gerasimov-Drell-Hearn Integral for 1H from 200 to 800 MeV[J]. Phys Rev Lett ,2001,87: 022003-1.
[8] Amarian M,Auerbach L,Averett T,et al. The 2Q Evolution of the Generalized Gerasimov-Drell-Hearn Integral for the Neutron Using a 3He Taget[Z]. arXiv: nucl-ex/0205020.
[9] Ghazikhanian V,Igo G,Trentalange S,et al. Proposal to Measure ΔσγN(k) and the High Energy Contribution to the Gerasimov-Drell-Hearn Sum Rule[Z].SLAC-Proposal E-159.
[10] Schumacher M. Studies on the Electromagnetic Structure of the Nucleon by Free and Quasi-free Compton Scattering at MAMI[Z]. arXiv: nucl-ex/0211011.
[11] Olmos V de Leon,Wissmann F,Achenbach P,et al. Low-energy Compton Scattering and the Polarizabilities of the Proton[J].Eur Phys J,2001,A10: 207.
[12] Kossert K,Camen M,Wissmann F,et al. Quasi-free Compton Scattering and the Polarizabilities of the Neutron[Z]. arXiv: nucl-ex/0210020.
[13] Babusci D,Giordano G,L′vov A I,et al. Low-energy Compton Scattering of Polarized Photons on Polarized Nucleons[J]. Phys Rev,1998,C58: 1 013 1.
[14] Baldin A M. Polarizability of Nucleons[J]. Nucl Phys,1960,18: 310.
[15] Lundin M,Adler J O,Glebe T,et al. Compton Scattering from the Deuteron and Neutron Polarizabilities[Z]. arXiv: nucl-ex/0204014.
[16] Kossert K,Camen M,Wissmann F,et al. Neutron Polarizabilities Investigated by Quasi-free Compton Scattering from the Deuteron[Z]. arXiv: nucl-ex/0201015.
[17] Camen M,Kossert K,Wissmann F,et al. Backward Spin Polarizability γπ of the Proton[Z]. arXiv: nucl-ex/0112015.
[18] Messchendorp J G,Janssen S,Kotulla M,et al. In Medium Modifications of the Interaction in Photon-induced Reactions[Z].arXiv: nucl-ex/0205009.
[19] Tatischeff B. Low Mass Exotic Baryons: Myth or reality[Z]. arXiv: nucl-ex/0207004.
[20] Fil'kov L V. Supernarrow Dibaryon and Exotic Baryons with Small Masses[Z]. arXiv: nucl-th/0208028.
[21] Chen J W,Ji X D. Measuring the P-odd Pion - nucleon Coupling h1πNN in π+- photoporton Production near the Threshold[Z]. arXiv: hep-ph/0011230.
[22] Zhu S L,Maekawa C M,Sacco G,et al. Electroweak Radiative Corrections to Parity Violating Electroexcitation of the Δ[Z]. arXiv: hep-ph/0107076.
[23] Elster Ch,Sibirtsev A,Schneider S,et al. Photoproduction of the η Meson from the Deuteron near Threshold[Z].arXiv: nucl-th/0207052.
[24] Sokol G A,Pavlyuchenko L N. Discovery of η-mesic Nuclei[Z]. arXiv: nucl-ex/0111020.
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