Pulse broadening — where it appears
Named by 2 essays across one field — each of them below, with the objects they name alongside it.
The wavelength a fibre does not smear
Fused silica's index has a second derivative that passes through zero at 1,273 nanometres, and that is not a design choice — it is where the ultraviolet and infrared absorptions balance. A pulse sent at that wavelength arrives the shape it left. A pulse at the wavelength of least loss arrives 1,800 picoseconds wider after a hundred kilometres.
The same cone, and a different arrival
The invariant fixes what a guide accepts and says nothing about when it arrives, and the two turn out to be nearly independent. Shaping the index so that the rays which travel furthest also travel fastest cuts the spread in arrival times by a factor of five hundred, at the cost of exactly half the light — and the acceptance cone the invariant governs is untouched throughout.
Named alongside it
The objects these essays reach for when they reach for this one.
Optical fibreBandwidthDispersionEtendueGraded-indexGroup velocityGroup velocity dispersionGuided wavesModal dispersionNumerical apertureOptical invariantRefractive index