Abstract
A novel concept for the nuclear force is introduced. The approach assumes that a specific dressed six-quark state (dressed dibaryon) is generated in NN collision at intermediate and short ranges. The new dressing mechanism providing π-, σ-, ρ- and ω-meson clouds around the six quark core is discussed. These novel components produce both strong intermediate-range attraction and short-range repulsion in the NN sector due to the s-channel exchange mechanism which is supplemented with conventional π- and 2π- Yukawa exchanges at intermediate and long ranges. The model developed is demonstrated to lead to numerous new effects and contributions in many fields of nuclear physics.
This work was partially supported by the RFBR Grant. No. 02-02-16612 and RFBR-DFG Grant No. 01-02-04015
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Kukulin, V.I. (2003). Dressed Dibaryon Production as a New Mechanism for Basic Nuclear Force and Meson-Exchange Currents. In: Krivec, R., Rosina, M., Golli, B., Širca, S. (eds) Few-Body Problems in Physics ’02. Few-Body Systems, vol 14. Springer, Vienna. https://doi.org/10.1007/978-3-7091-6728-1_17
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DOI: https://doi.org/10.1007/978-3-7091-6728-1_17
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