Department of Chemistry, University of Copenhagen, Copenhagen, Denmark
Viewed
Since the preprint corresponding to this journal article was posted outside of Copernicus Publications, the preprint-related metrics are limited to HTML views.
Total article views: 1,912 (including HTML, PDF, and XML)
HTML
PDF
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Total
BibTeX
EndNote
1,899
0
13
1,912
0
0
HTML: 1,899
PDF: 0
XML: 13
Total: 1,912
BibTeX: 0
EndNote: 0
Views and downloads (calculated since 03 Nov 2025)
Cumulative views and downloads
(calculated since 03 Nov 2025)
Total article views: 1,912 (including HTML, PDF, and XML)
HTML
PDF
XML
Total
BibTeX
EndNote
1,899
0
13
1,912
0
0
HTML: 1,899
PDF: 0
XML: 13
Total: 1,912
BibTeX: 0
EndNote: 0
Views and downloads (calculated since 03 Nov 2025)
Cumulative views and downloads
(calculated since 03 Nov 2025)
Viewed (geographical distribution)
Since the preprint corresponding to this journal article was posted outside of Copernicus Publications, the preprint-related metrics are limited to HTML views.
Total article views: 1,912 (including HTML, PDF, and XML)
Thereof 1,900 with geography defined
and 12 with unknown origin.
Total article views: 1,912 (including HTML, PDF, and XML)
Thereof 1,900 with geography defined
and 12 with unknown origin.
Light scattering is important in the atmosphere, oceans, snow, ice, paints, and many other materials. We developed EigenFlux, a new open-source method for simulating how light moves through complex materials. It remains accurate, stable, and efficient even when scattering is extremely strong or highly directional, conditions that can challenge existing methods. This broadens the range of systems that can be modeled reliably.
Light scattering is important in the atmosphere, oceans, snow, ice, paints, and many other...