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In the plane, the reflection property can be stated as three theorems (Ogilvy 1990, pp. 73-77):
Let
be a smooth regular parameterized curve in
defined on an Open Interval
, and
let
and
be points in
, where
is an
-D Projective Space. Then
has a reflection property with Foci
and
if, for each point
,
Foci | Sign | Both foci finite | One focus finite | Both foci infinite |
distinct | Positive | confocal ellipses | confocal parabolas | parallel lines |
distinct | Negative | confocal hyperbola and perpendicular | confocal parabolas | parallel lines |
bisector of interfoci line segment | ||||
equal | concentric circles | parallel lines |
Let be a smooth connected surface, and let
and
be points in
, where
is an
-D Projective Space. Then
has a reflection property with Foci
and
if, for each point
,
Foci | Sign | Both foci finite | One focus finite | Both foci infinite |
distinct | Positive | confocal ellipsoids | confocal paraboloids | parallel planes |
distinct | Negative | confocal hyperboloids and plane perpendicular | confocal paraboloids | parallel planes |
bisector of interfoci line segment | ||||
equal | concentric spheres | parallel planes |
See also Billiards
References
Drucker, D. ``Euclidean Hypersurfaces with Reflective Properties.'' Geometrica Dedicata 33, 325-329, 1990.
Drucker, D. ``Reflective Euclidean Hypersurfaces.'' Geometrica Dedicata 39, 361-362, 1991.
Drucker, D. ``Reflection Properties of Curves and Surfaces.'' Math. Mag. 65, 147-157, 1992.
Drucker, D. and Locke, P. ``A Natural Classification of Curves and Surfaces with Reflection Properties.''
Math. Mag. 69, 249-256, 1996.
Ogilvy, C. S. Excursions in Geometry. New York: Dover, pp. 73-77, 1990.
Wegner, B. ``Comment on `Euclidean Hypersurfaces with Reflective Properties'.'' Geometrica Dedicata 39, 357-359, 1991.
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© 1996-9 Eric W. Weisstein