This work is devoted to the study of diquark correlations inside the nucleon. We analyze some matrix elements which encode information about the nonperturbative forces, in different color antitriplet diquark channels. We suggest a lattice calculation to check the quark-diquark picture and clarify the role of instanton-mediated interactions. We study in detail the physical properties of the 0(+) diquark, using the random instanton liquid model. We find that instanton forces are sufficiently strong to form a diquark bound state, with a mass of similar to 500 MeV, which is compatible with earlier estimates. We also compute its electromagnetic form factor and find that the diquark is a broad object, with a size comparable with that of the proton.
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Yonsei Univ, Dept Phys, Seoul 03722, South Korea
Yonsei Univ, Inst Phys & Appl Phys, Seoul 03722, South KoreaYonsei Univ, Dept Phys, Seoul 03722, South Korea
Yun, Hyeongock
Noh, Sungsik
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Yonsei Univ, Dept Phys, Seoul 03722, South Korea
Yonsei Univ, Inst Phys & Appl Phys, Seoul 03722, South KoreaYonsei Univ, Dept Phys, Seoul 03722, South Korea
Noh, Sungsik
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Lim, Sanghoon
Song, Taesoo
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GSI Helmholtzzentrum Schwerionenforschung GmbH, Planckstr 1, D-64291 Darmstadt, GermanyYonsei Univ, Dept Phys, Seoul 03722, South Korea
Song, Taesoo
Hong, Juhee
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Yonsei Univ, Dept Phys, Seoul 03722, South Korea
Yonsei Univ, Inst Phys & Appl Phys, Seoul 03722, South KoreaYonsei Univ, Dept Phys, Seoul 03722, South Korea
Hong, Juhee
Park, Aaron
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Yonsei Univ, Dept Phys, Seoul 03722, South Korea
Yonsei Univ, Inst Phys & Appl Phys, Seoul 03722, South KoreaYonsei Univ, Dept Phys, Seoul 03722, South Korea
Park, Aaron
Lee, Su Houng
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Yonsei Univ, Dept Phys, Seoul 03722, South Korea
Yonsei Univ, Inst Phys & Appl Phys, Seoul 03722, South KoreaYonsei Univ, Dept Phys, Seoul 03722, South Korea
Lee, Su Houng
Doenigus, Benjamin
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Goethe Univ Frankfurt, Inst Kernphys, Max Von Laue Str 1, D-60438 Frankfurt, GermanyYonsei Univ, Dept Phys, Seoul 03722, South Korea