Another point regarding the colours of feathers has no doubt puzzled
many of our readers; and that is, the metallic quality of the colouring
in some exceptional feathers, and in these only. The feathers of the
parrot just referred to, are, for instance, simply red and yellow, or
blue and green; but the feathers of the peacock, though displaying the
same colours, show a metallic lustre which is wanting in the other case.
The feathers of the starling, the blackbird, and the black hen of the
farmyard, though not so brilliant as those of the peacock, are the same
as regards the quality of the light they reflect. The secret of the
difference lies in the greater opacity of the feathers named; they are
_black_ feathers, while those of the parrot are light-coloured. Now
after the metals themselves, there are few objects in nature so opaque
as the black pigment of a black feather. If a thin section through
the roots of young black feathers is cut for examination under the
microscope, the pigmented parts, although cut so very thin, appear
completely opaque. And just as a glass gives a better reflection when
backed by something opaque, so does the reflecting surface of the
feather. Hence it is that the quality of the colours reflected by these
feathers is what we call "metallic." If we ask for a definition of this
metallic brightness, other than the accepted fact that it resembles the
light reflected from metals, the artist will reply that it consists in
two things--(1) the greater brilliancy of the light reflected, that is
to say the greater completeness of the reflection; and (2) the entire
absence of those gradations of light which are afforded by the
reflections from any object, however dark, that possesses a surface
translucent, even in the smallest degree. "Metallic" reflections, in
fact, may be defined as those in which the greatest amount of light is
reflected, and the reflected sunlight receives from the reflecting
surface the least possible degree of modification. While the actual tint
of the colour reflected by a black feather, then, is determined by the
form and position of its angular ridges, the quality of the reflection
is determined by the opacity of the substance itself. It is interesting
to note that the opacity necessary for reflecting a "metallic" lustre,
may be produced by means of pigment, in the vegetable as well as in the
animal organism; for instance, in the dark centres of _Coreopsis_ (the
Beetle Flower), and several other fashionable garden plants belonging to
the Compositæ or Daisy family. Within the animal kingdom, we may note
that the metallic lustre is almost entirely confined to land animals;
their dry skins have more chance to develop opaque parts, than the moist
tissues of creatures that live in the water. The most familiar exception
to this rule is the Sea-Mouse, an Annelid worm found on English coasts
(p. 73), which receives its odd name because it is a fat oval creature,
Public-domain text, read in full here on John Shaqi.
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