One-Cold Poisson Channel: A Simple Continuous-Time Channel with Zero Dispersion
Abstract
We introduce the one-cold Poisson channel (OCPC), where the transmitter chooses one of several frequency bands to attenuate at a time. In particular, the perfect OCPC, where the number of bands is unlimited, is an extremely simple continuous-time memoryless channel. It has a capacity 1, zero channel dispersion, and an information spectrum being the degenerate distribution at 1. It is the only known nontrivial (discrete or continuous-time) memoryless channel with a closed-form formula for its optimal non-asymptotic error probability, making it the simplest channel in this sense. A potential application is optical communication with a tunable band rejection filter. Due to its simplicity, we may use it as a basic currency of information that is infinitely divisible, as an alternative to bits which are not infinitely divisible. OCPC with perfect feedback gives a generalization of prefix codes. We also study non-asymptotic coding and channel simulation results for the general OCPC.
Keywords
Cite
@article{arxiv.2601.09894,
title = {One-Cold Poisson Channel: A Simple Continuous-Time Channel with Zero Dispersion},
author = {Cheuk Ting Li},
journal= {arXiv preprint arXiv:2601.09894},
year = {2026}
}
Comments
9 pages, 2 figures