Eurasian Jay (Garrulus glandarius) feathers display periodic variations in the reflected colour from white through light blue, dark blue and black. We find the structures responsible for the colour are continuous in their size and spatially controlled by the degree of spinodal phase separation in the corresponding region of the feather barb. Blue structures have a well-defined broadband ultra-violet (UV) to blue wavelength distribution; the corresponding nanostructure has characteristic spinodal morphology with a lengthscale of order 150 nm. White regions have a larger 200 nm nanostructure, consistent with a spinodal process that has coarsened further, yielding broader wavelength white reflectance. Our analysis shows that nanostructure in s...
We report for the first time the existence of a structural mechanism of feathers different from irid...
Peacock feathers feature a rich gamut of colours, created by a most sophisticated structural coloura...
Skip to Next Section Iridescence is produced by coherent scattering of light waves from alternating ...
Eurasian Jay (Garrulus glandarius) feathers display periodic variations in the reflected colour from...
Many birds have fascinating colours generated by specialized nanoscopic structures inside their feat...
Non-iridescent structural plumage color is typically produced by coherent scattering of light within...
Non-iridescent structural plumage color is typically produced by coherent scattering of light within...
The plumage of many birds is highly attractive, especially when thefeathers are patterned in strongl...
Non-iridescent, structural coloration in birds originates from the feather's internal nanostructure ...
The colours of the common kingfisher, Alcedo atthis, reside in the barbs of the three main types of ...
Structural colours of avian skin have long been hypothesized to be produced by incoherent (Rayleigh/...
Evidence suggests that structural plumage colour can be an honest signal of individual quality, but ...
Closely related species often differ in coloration. Understanding the mechanistic bases of such diff...
Dynamic changes in integumentary color occur in cases as diverse as the neurologically controlled ir...
Many studies have shown how pigments and internal nanostructures generate color in nature. External ...
We report for the first time the existence of a structural mechanism of feathers different from irid...
Peacock feathers feature a rich gamut of colours, created by a most sophisticated structural coloura...
Skip to Next Section Iridescence is produced by coherent scattering of light waves from alternating ...
Eurasian Jay (Garrulus glandarius) feathers display periodic variations in the reflected colour from...
Many birds have fascinating colours generated by specialized nanoscopic structures inside their feat...
Non-iridescent structural plumage color is typically produced by coherent scattering of light within...
Non-iridescent structural plumage color is typically produced by coherent scattering of light within...
The plumage of many birds is highly attractive, especially when thefeathers are patterned in strongl...
Non-iridescent, structural coloration in birds originates from the feather's internal nanostructure ...
The colours of the common kingfisher, Alcedo atthis, reside in the barbs of the three main types of ...
Structural colours of avian skin have long been hypothesized to be produced by incoherent (Rayleigh/...
Evidence suggests that structural plumage colour can be an honest signal of individual quality, but ...
Closely related species often differ in coloration. Understanding the mechanistic bases of such diff...
Dynamic changes in integumentary color occur in cases as diverse as the neurologically controlled ir...
Many studies have shown how pigments and internal nanostructures generate color in nature. External ...
We report for the first time the existence of a structural mechanism of feathers different from irid...
Peacock feathers feature a rich gamut of colours, created by a most sophisticated structural coloura...
Skip to Next Section Iridescence is produced by coherent scattering of light waves from alternating ...