Skylight Polarization Patterns and Animal Orientation
Open Access
- 1 February 1982
- journal article
- Published by The Company of Biologists in Journal of Experimental Biology
- Vol. 96 (1) , 69-91
- https://doi.org/10.1242/jeb.96.1.69
Abstract
Although many invertebrate animals orient by means of ultraviolet sky-light polarization patterns, existing measurements of these patterns are inadequate for full analysis of the biologically relevant information available from the sky. To fill this gap we have used a precision scanning polarimeter to measure simultaneously the intensity, degree, and direction of vibration (E-vector orientation) of polarized light at 5° intervals over the sky. The resulting sky maps were constructed for u.v. (350 nm) and visible wavelengths (500 and 650 nm) under a variety of atmospheric conditions. Our measurements confirmed that the patterns of radiance and degree of polarization of skylight are highly variable and hence unreliable as orientation cues; but patterns of E-vector orientation are relatively stable and predictable over most of the sky under all but very hazy or overcast conditions. The observed E-vector patterns correspond more closely to predictions based on first order (Rayleigh) scattering at 650 and 500 nm than at 350 nm. This is true both in terms of absolute accuracy and the proportion of the sky with relatively ‘correct’ information. Yet most insects respond to polarization patterns only at u.v. wavelengths. This apparent paradox can perhaps be resolved by assuming that there is no great selective advantage for any particular wavelength when large areas of blue sky are visible, but that under special and difficult conditions ultraviolet has advantages over longer wavelengths. Measurements under partially cloud-covered sky, for instance, or under extensive vegetation, show that both spuriously polarized and unpolarized light resulting from reflexions present more troublesome interference at longer wavelengths than in the u.v. The accuracy of orientation achieved by dancing honey bees appears to be greater than can readily be accounted for by assuming that they use a strictly geometrical or analytical processing system for their orientation to polarized light.Keywords
This publication has 25 references indexed in Scilit:
- Bees Have RulesScience, 1979
- Models for unambiguousE-vector navigation in the beeJournal of Comparative Physiology A, 1977
- Polarized-Light Navigation by InsectsScientific American, 1976
- Polarized light orientation of the honey bee: The minimum visual angleJournal of Comparative Physiology A, 1976
- Orientation of bees by the polarized light of a limited area of the skyJournal of Comparative Physiology A, 1973
- The spectral sensitivity of polarized light orientation inCataglyphis bicolor (Formicidae, Hymenoptera)Journal of Comparative Physiology A, 1973
- The Wavelength Dependence of PolarizationApplied Optics, 1963
- Wavelength Dependence of the Polarization of the Sunlit Sky*Journal of the Optical Society of America, 1962
- Light Scattering in the Atmosphere and the Polarization of Sky Light*Journal of the Optical Society of America, 1957
- The Illumination and Polarization of the Sunlit Sky on Rayleigh ScatteringTransactions of the American Philosophical Society, 1954