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Proton and neutron correlations in 10^{10}B

Abstract

We investigate positive-parity states of 10^{10}B with the calculation of antisymmetrized molecular dynamics focusing on pnpn pair correlations. We discuss effects of the spin-orbit interaction on energy spectra and pnpn correlations of the JπT=11+0J^\pi T=1^+_10, =31+0=3^+_10, and 01+10^+_11 states. The 11+01^+_10 state has almost no energy gain of the spin-orbit interaction, whereas the 31+03^+_10 state gains the spin-orbit interaction energy largely to come down to the ground state. We interpret a part of the two-body spin-orbit interaction in the adopted effective interactions as a contribution of the genuine NNNNNN force, and find it to be essential for the level ordering of the 31+03^+_10 and 11+01^+_10 states in 10^{10}B. We also apply a 2α+pn2\alpha+pn model to discuss effects of the spin-orbit interaction on T=0T=0 and T=1T=1 pnpn pairs around the 2α\alpha core. In the spin-aligned JπT=3+0J^\pi T=3^+0 state, the spin-orbit interaction affects the (ST)=(10)(ST)=(10) pair attractively and keeps the pair close to the core, whereas, in the 1+01^+0 state, it gives a minor effect to the (ST)=(10)(ST)=(10) pair. In the 0+10^+1 state, the (ST)=(01)(ST)=(01) pair is somewhat dissociated by the spin-orbit interaction.Comment: 12 pages 9 figure

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