arXiv · math/0506124
Relative entropy and the multi-variable multi-dimensional moment problem
Abstract
Entropy-like functionals on operator algebras have been studied since the pioneering work of von Neumann, Umegaki, Lindblad, and Lieb. The most well-known are the von Neumann entropy $trace (ρ\log ρ)$ and a generalization of the Kullback-Leibler distance $trace (ρ\log ρ- ρ\log σ)$, refered to as quantum relative entropy and used to quantify distance between states of a quantum system. The purpose of this paper is to explore these as regularizing functionals in seeking solutions to multi-variable and multi-dimensional moment problems. It will be shown that extrema can be effectively constructed via a suitable homotopy. The homotopy approach leads naturally to a further generalization and a description of all the solutions to such moment problems. This is accomplished by a renormalization of a Riemannian metric induced by entropy functionals. As an application we discuss the inverse problem of describing power spectra which are consistent with second-order statistics, which has been the main motivation behind the present work.
Explore related subjects
Keep this discovery
Explore connections, maps & timelines
Tryphon T. Georgiou. 2005-06-07. Relative entropy and the multi-variable multi-dimensional moment problem. https://arxiv.org/abs/math/0506124
Cite the original work for its findings. Save a collection to share your selection of sources.