Trinuclear Δ components and the triton binding energy

Physics

Scientific paper

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Few-Body Systems, Binding Energies And Masses, A<=5

Scientific paper

The influence of trinuclear one-Δ and ΔΔ components on the triton binding energy is studied nonperturbatively using the Hannover and Argonne force models. This is the first such study of ΔΔ effects, and these are found to be appreciable. In the Hannover model, repulsive Δ dispersive effects and attractive Δ three-body-force effects cancel almost exactly, yielding little net Δ effect. A similar result obtains for the Argonne model, yielding a net Δ repulsive effect of only ~380 keV. Implications for current approaches which make simplifying assumptions about Δ effects are indicated.

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