Packing dimers on $(2p + 1) \times (2q + 1) $ lattices
Abstract
We use computational method to investigate the number of ways to pack dimers on \emph{odd-by-odd} lattices. In this case, there is always a single vacancy in the lattices. We show that the dimer configuration numbers on \emph{odd} square lattices have some remarkable number-theoretical properties in parallel to those of close-packed dimers on \emph{even} square lattices, for which exact solution exists. Furthermore, we demonstrate that there is an unambiguous logarithm term in the finite size correction of free energy of odd-by-odd lattice strips with any width . This logarithm term determines the distinct behavior of the free energy of odd square lattices. These findings reveal a deep and previously unexplored connection between statistical physics models and number theory, and indicate the possibility that the monomer-dimer problem might be solvable.
Keywords
Cite
@article{arxiv.1410.8059,
title = {Packing dimers on $(2p + 1) \times (2q + 1) $ lattices},
author = {Yong Kong},
journal= {arXiv preprint arXiv:1410.8059},
year = {2024}
}
Comments
20 pages, 7 figures