KMS conditions, standard real subspaces and reflection positivity on the circle group
arXiv:1611.00080 · doi:10.2140/pjm.2019.299.117
Abstract
In the present paper we continue our investigations of the representation theoretic side of reflection positivity by studying positive definite functions ψon the additive group (R,+) satisfying a suitably defined KMS condition. These functions take values in the space Bil(V) of bilinear forms on a real vector space V. As in quantum statistical mechanics, the KMS condition is defined in terms of an analytic continuation of ψto the strip { z \in C\: 0 \leq Im z \leq b} with a coupling condition ψ(ib + t) = \oline{ψ(t)} on the boundary. Our first main result consists of a characterization of these functions in terms of modular objects (Δ, J) (J an antilinear involution and Δ> 0 selfadjoint with JΔJ = Δ^{-1}) and an integral representation. Our second main result is the existence of a Bil(V)-valued positive definite function f on the group R_τ= R \rtimes {\id_\R,τ} with τ(t) = -t satisfying f(t,τ) = ψ(it) for t \in R. We thus obtain a 2b-periodic unitary one-parameter group on the GNS space H_f for which the one-parameter group on the GNS space H_ψis obtained by Osterwalder--Schrader quantization. Finally, we show that the building blocks of these representations arise from bundle-valued Sobolev spaces corresponding to the kernels 1/(λ^2 - (d^2)/(dt^2}) on the circle R/bZ of length b.