The Search for Technosignatures: a Review of Possibilities
Abstract
This paper aims to review the diverse range of technosignatures that have been proposed in the literature. We organize the review by scales, starting carefully from Earth, then zooming out to Earth's orbit, the solar system, including the Moon, the Earth-Moon Lagrange points, the inner solar system, the asteroid belt, interstellar objects, the outer solar system, the Kuiper belt, the solar gravitational lens region, and the Oort cloud. We then introduce the Kardashev and Barrow scale before exploring exoplanetary technosignatures, from surface, atmospheric to orbital sources. We next consider stellar technosignatures that may involve massive energy utilization, stellar modification or stellar pollution, and end with a section about compact objects. We then review attempts to detect interstellar communication, and discuss many dimensions of the search space from first principles. Then we consider interstellar travel technosignatures, and end with galactic, extragalactic and universal signatures. We end with a discussion about synergies between biosignatures and technosignatures searches, anomaly detection, multimodal strategies, instruments for detecting technosignatures, how to evaluate and prioritize the search, as well as epistemological issues.
Keywords
Cite
@article{arxiv.2605.21093,
title = {The Search for Technosignatures: a Review of Possibilities},
author = {Clément Vidal and Benji L. Fields and Damian R. Sowinski and Mark Elowitz and Stuart Bartlett and Richard J. Terrile and Alex Ellery and Daliah Bibas and Armando M. Mastrogiovanni and Niklas Döbler and Manika Singla and Julia DeMarines and Theresa Fisher and Yuri Uno and Jake D. Turner and Evan L. Sneed and Advait Huggahalli and Megan Grace Li and Zhuofu and Li and Macy Huston and Ramiro Saide},
journal= {arXiv preprint arXiv:2605.21093},
year = {2026}
}
Comments
118 pages, paper started as a collective workshop at the Penn State SETI Symposium (PSETI 2023)