pith. sign in

arxiv: 1408.7002 · v1 · pith:DAIASRJXnew · submitted 2014-08-29 · 🧮 math-ph · math.AT· math.MP· quant-ph

Topology of graph configuration spaces and quantum statistics

classification 🧮 math-ph math.ATmath.MPquant-ph
keywords graphsconnectedmorsestatisticsconfigurationdiscretegraphpotentials
0
0 comments X
read the original abstract

In this thesis we develop a full characterization of abelian quantum statistics on graphs. We explain how the number of anyon phases is related to connectivity. For 2-connected graphs the independence of quantum statistics with respect to the number of particles is proven. For non-planar 3-connected graphs we identify bosons and fermions as the only possible statistics, whereas for planar 3-connected graphs we show that one anyon phase exists. Our approach also yields an alternative proof of the structure theorem for the first homology group of n-particle graph configuration spaces. Finally, we determine the topological gauge potentials for 2-connected graphs. Moreover we present an alternative application of discrete Morse theory for two-particle graph configuration spaces. In contrast to previous constructions, which are based on discrete Morse vector fields, our approach is through Morse functions, which have a nice physical interpretation as two-body potentials constructed from one-body potentials. We also give a brief introduction to discrete Morse theory.

This paper has not been read by Pith yet.

discussion (0)

Sign in with ORCID, Apple, or X to comment. Anyone can read and Pith papers without signing in.