English

Redshifted civilizations, galactic empires, and the Fermi paradox

General Relativity and Quantum Cosmology 2026-04-21 v2 Popular Physics

Abstract

Given the vast distances between stars in the Milky Way and the long timescales required for interstellar travel, we consider how a civilization might overcome the constraints arising from finite lifespans and the speed of light without invoking exotic or novel physics. We consider several scenarios in which a civilization can migrate to a time-dilated frame within the scope of classical general relativity and without incurring a biologically intolerable level of acceleration. Remarkably, the power requirements are lower than one might expect; biologically tolerable orbits near the photon radius of Sgr A* can be maintained by a civilization well below the Type II threshold, and a single Type II civilization can establish a galaxy-spanning civilization with a time dilation factor of 10410^4, enabling trips spanning the diameter of the Milky Way within a human lifetime in the civilizational reference frame. We also find that isotropic, monochromatic signals from orbits near the photon radius of a black hole exhibit a downward frequency drift. The vulnerability of ultrarelativistic vessels to destruction, combined with the relatively short timescales on which adversarial civilizations can arise, provides a strong motivating element for the ``dark forest'' hypothesis.

Keywords

Cite

@article{arxiv.2510.00377,
  title  = {Redshifted civilizations, galactic empires, and the Fermi paradox},
  author = {Chris Reiss and Justin C. Feng},
  journal= {arXiv preprint arXiv:2510.00377},
  year   = {2026}
}

Comments

18 pages, 7 figures