Deformed boson-fermion correspondence, Q-bosons, and topological strings on the conifold
Abstract
We consider two different physical systems for which the basis of the Hilbert space can be parametrized by Young diagrams: free complex fermions and the phase model of strongly correlated bosons. Both systems have natural, well-known deformations parametrized by a parameter Q: the former one is related to the deformed boson-fermion correspondence introduced by N. Jing, while the latter is the so-called Q-boson, arising also in the context of quantum groups. These deformations are equivalent and can be realized in the same way in the algebra of Hall-Littlewood symmetric functions. Without a deformation, these reduce to Schur functions, which can be used to construct a generating function of plane partitions, reproducing a topological string partition function on Bbb C3. We show that a deformation of both systems leads then to a deformed generating function, which reproduces topological string partition function of the conifold, with the deformation parameter Q identified with the size of Bbb P1. Similarly, a deformation of the fermion one-point function results in the A-brane partition function on the conifold.
- Publication:
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Journal of High Energy Physics
- Pub Date:
- October 2008
- DOI:
- arXiv:
- arXiv:0808.2327
- Bibcode:
- 2008JHEP...10..104S
- Keywords:
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- High Energy Physics - Theory;
- Condensed Matter - Other Condensed Matter;
- Mathematical Physics
- E-Print:
- 20 pages, 1 figure