English

Trust, but verify: Reducing artificial light emissions and monitoring compliance

Instrumentation and Methods for Astrophysics 2025-05-16 v2

Abstract

In order to reduce light pollution we have to reduce the overall amount of artificial light emissions. This is a consequence of the basic rules governing the propagation of light in the terrestrial environment. In this work I revisit the physical laws causing that (i) "all" artificial light emitted outdoors is lost or pollutant, (ii) the negative effects of light pollution depend monotonically on the local concentration of photons of anthropogenic origin, and (iii) this concentration depends linearly on the total artificial light emissions, weighted by the light pollution propagation functions. Setting total emission limits becomes necessary in order to ensure that the negative effects of light pollution do not surpass red-lines of unacceptable degradation of the natural night. Once these red-lines are socially agreed, monitoring compliance becomes a relevant task. Several complementary methods for assessing total light emissions are being used nowadays, including public inventories of installed lights, direct radiance measurements from ground or low Earth orbit satellites, and scattered radiance measurements using ground based detectors (night sky brightness monitoring). While updated administrative inventories could in principle be trusted, independent verification is a must. The required measurements pose in turn significant challenges: we discuss here how the variability of the terrestrial atmosphere sets a lower limit on the minimum emission changes that can be reliably detected by measurements, and propose some ways to improve this performance.

Keywords

Cite

@article{arxiv.2503.02724,
  title  = {Trust, but verify: Reducing artificial light emissions and monitoring compliance},
  author = {Salvador Bará},
  journal= {arXiv preprint arXiv:2503.02724},
  year   = {2025}
}

Comments

18 pages, 4 figures. This preprint is an extended version of the talk with the same title presented at the 3rd International Conference on Environmental and Astronomical Light Pollution, EALPO 2024, Niepo{\l}omice, Poland. September 6th-8th 2024 / Revised version, typos corrected, additional references