Diverging evolution of light pollution indicators: can the Globe at Night and VIIRS-DNB measurements be reconciled?
arXiv:2409.13111 · doi:10.1016/j.jqsrt.2025.109378
Abstract
The radiance of nighttime artificial lights measured by the VIIRS-DNB instrument on board the satellite Suomi-NPP increases at an average rate ~2.2 %/yr worldwide, whereas the artificial radiance of the night sky deduced from the Globe at Night (GAN) unaided-eye observations of the number of visible stars is reported to increase at an average rate ~9.6 %/yr. The difference between these two estimates is remarkable. This raises the question of whether the diverging temporal evolution of these indicators could be due to changes in the spectral composition of outdoor artificial light, consequence of the current process of replacement of lighting technologies. This paper presents a model for evaluating the temporal rate of change of different light pollution indicators and applies it to the VIIRS-DNB vs GAN issue, based on available data. The results show that the reported difference could be explained by spectral changes alone, if the visual GAN observations are made with scotopic or mesopic adaptation at definite times under some particular transition conditions. In case of photopic adapted observers, however, reconciling these two measurement sets requires the existence of GAN-specific light sources that affect the Globe at Night observations but do not show up in the VIIRS-DNB data. The lumen emissions of these GAN-specific sources for photopic observers should increase at a rate larger than 9%/yr worldwide.
24 pages, 3 figures, 2 tables. Author-formatted text of the accepted version of this article, whose version of record is published in Journal of Quantitative Spectroscopy and Radiative Transfer 335 (2025) 109378
References in corpus (15)
- The new world atlas of artificial night sky brightness
- Measuring night sky brightness: methods and challenges
- Sky Quality Meter measurements in a colour changing world
- The nature of the diffuse light near cities detected in nighttime satellite imagery
- The propagation of light pollution in the atmosphere
- Protecting the night sky darkness in astronomical observatories: a linear systems approach
- Photons without borders: quantifying light pollution transfer between territories
- Monitoring transition: expected night sky brightness trends in different photometric bands
- Synthetic RGB photometry of bright stars: definition of the standard photometric system and UCM library of spectrophotometric spectra
- Modelling the artificial night sky brightness at short distances from streetlights
- Quantitative evaluation of outdoor artificial light emissions using low Earth orbit radiometers
- Estimating linear radiance indicators from the zenith night sky brightness: on the Posch ratio for natural and light polluted skies
- RGB photometric calibration of 15 million Gaia stars
- Photometric Catalogue for Space and Ground Night-Time Remote-Sensing Calibration: RGB Synthetic Photometry from Gaia DR3 Spectrophotometry
- Detecting changes in anthropogenic light emissions: limits due to atmospheric variability