dorsal/arxiv
View SchemaSDG fermion-pair algebraic SO(12) and Sp(10) models and their boson realizations
| Authors | P. Navratil, H. B. Geyer, J. Dobes, J. Dobaczewski |
|---|---|
| Categories | |
| ArXiv ID | nucl-th/9404011 |
| URL | https://arxiv.org/abs/nucl-th/9404011 |
| DOI | 10.1006/aphy.1995.1098 |
| Journal | Annals Phys. 243 (1995) 218-246 |
Abstract
It is shown how the boson mapping formalism may be applied as a useful many-body tool to solve a fermion problem. This is done in the context of generalized Ginocchio models for which we introduce S-, D-, and G-pairs of fermions and subsequently construct the sdg-boson realizations of the generalized Dyson type. The constructed SO(12) and Sp(10) fermion models are solved beyond the explicit symmetry limits. Phase transitions to rotational structures are obtained, also in situations where there is no underlying SU(3) symmetry.
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"abstract": "It is shown how the boson mapping formalism may be applied as a useful\nmany-body tool to solve a fermion problem. This is done in the context of\ngeneralized Ginocchio models for which we introduce S-, D-, and G-pairs of\nfermions and subsequently construct the sdg-boson realizations of the\ngeneralized Dyson type. The constructed SO(12) and Sp(10) fermion models are\nsolved beyond the explicit symmetry limits. Phase transitions to rotational\nstructures are obtained, also in situations where there is no underlying SU(3)\nsymmetry.",
"arxiv_id": "nucl-th/9404011",
"authors": [
"P. Navratil",
"H. B. Geyer",
"J. Dobes",
"J. Dobaczewski"
],
"categories": [
"nucl-th"
],
"doi": "10.1006/aphy.1995.1098",
"journal_ref": "Annals Phys. 243 (1995) 218-246",
"title": "SDG fermion-pair algebraic SO(12) and Sp(10) models and their boson realizations",
"url": "https://arxiv.org/abs/nucl-th/9404011"
},
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