Optical vortex — where it appears
Named by 2 essays across one field — each of them below, with the objects they name alongside it.
The surface every ray is normal to
Light from a point, bent by any number of lenses and mirrors, comes out as a tangle of rays that no longer meet anywhere. Hidden in the tangle is a surface every ray crosses at a right angle: the set of points the light reaches at the same optical time. That a surface always exists is a theorem two centuries old, and it is the reason a modern wavefront sensor works — an array of tiny lenses measures only the direction each patch of light is travelling, and the measurements can be added up into a shape only because they are the slopes of one.
The dark lines a wave cannot avoid
Overlap three waves of light and there are places where they cancel exactly — not along fringes, as two waves cancel, but at isolated points, round which the phase of the light turns through a full circle. They cannot be removed by any small change, they can only be created or destroyed two at a time, and random light is full of them, about three to every square wavelength. A grating with a fork in it writes one into a beam on purpose, and the beam that comes out has a dark core and carries angular momentum in its twist.
Named alongside it
The objects these essays reach for when they reach for this one.
AberrationAdaptive opticsDiffraction gratingFermat's principleGradientHologramInterferenceOptical path lengthOrbital angular momentumPhaseRay opticsSpeckle