Spin Structure of Many-Body Systems with Two-Body Random Interactions
arXiv:nucl-th/0007013 · doi:10.1103/PhysRevC.63.014307
Abstract
We investigate the spin structure of many-fermion systems with a spin-conserving two-body random interaction. We find a strong dominance of spin-0 ground states and considerable correlations between energies and wave functions of low-lying states with different spin, but no indication of pairing. The spectral densities exhibit spin-dependent shapes and widths, and depend on the relative strengths of the spin-0 and spin-1 couplings in the two-body random matrix. The spin structure of low-lying states can largely be explained analytically.
10 pages, including 3 figures
References in corpus (7)
- Band structure from random interactions
- Generalized seniority from random Hamiltonians
- On the dominance of J(P)=0(+) ground states in even-even nuclei from random two-body interactions
- Suppression of Ground-State Magnetization in Finite-Sized Systems Due to Off-Diagonal Interaction Fluctuations
- Collective states in nuclei and many-body random interactions
- Wave Function Structure in Two-Body Random Matrix Ensembles
- Random matrix model for quantum dots with interactions and the conductance peak spacing distribution
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