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article Open AccessTop 1% cited

Artificially lit surface of Earth at night increasing in radiance and extent

Science Advances · 2017 · Vol. 3(11) · pp. e1701528–e1701528
Christopher C. M. KybaTheres KuesterAlejandro Sánchez de MiguelKimberly BaughAndreas JechowFranz HölkerJonathan BennieChristopher D. ElvidgeKevin J. GastonLuis Guanter

Abstract

A central aim of the "lighting revolution" (the transition to solid-state lighting technology) is decreased energy consumption. This could be undermined by a rebound effect of increased use in response to lowered cost of light. We use the first-ever calibrated satellite radiometer designed for night lights to show that from 2012 to 2016, Earth's artificially lit outdoor area grew by 2.2% per year, with a total radiance growth of 1.8% per year. Continuously lit areas brightened at a rate of 2.2% per year. Large differences in national growth rates were observed, with lighting remaining stable or decreasing in only a few countries. These data are not consistent with global scale energy reductions but rather indicate increased light pollution, with corresponding negative consequences for flora, fauna, and human well-being.

Impact of Light on Environment and HealthRadianceEarth (classical element)Remote sensingAstrobiologyEnvironmental scienceEarth observationEarth surfaceGeologyGeographyMeteorology

Funding

  • National Aeronautics and Space Administration
  • European Cooperation in Science and Technology
  • Horizon 2020 Framework Programme
Citations
894
FWCI
46.87
field-weighted impact
References
47
Percentile
100%
vs. same field & year
Citations per year
References
Limiting the impact of light pollution on human health, environment and stellar visibility
Journal of Environmental Management · 2011 · 587 citations
The new world atlas of artificial night sky brightness
Science Advances · 2016 · 1,551 citations
VIIRS night-time lights
International Journal of Remote Sensing · 2017 · 886 citations
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