Fourier synthesis — where it appears
Named by 3 essays across one field — each of them below, with the objects they name alongside it.
The phase problem
A detector records how much light arrives and not when it arrives, so half of every diffraction measurement is thrown away before it is written down. The half that is lost turns out to be the half that carries the structure.
One experiment gives the cosine, the other gives the sine
Friedel's law holding exactly is what makes the phase unreachable. Its breaking is what hands it back: an isomorphous difference fixes the cosine of the phase and leaves two candidates, and the anomalous difference fixes the sine, which chooses.
As sharp as the sphere is wide
A map made from a truncated sum is not a blurred picture of the structure. It is the structure convolved with the transform of the sphere — so peaks acquire a width proportional to the resolution, and a negative ripple of twenty-two per cent that no improvement in the data ever reduces.
Named alongside it
The objects these essays reach for when they reach for this one.
Phase problemStructure factorAnomalous scatteringBijvoet differenceConvolutionDifference mapDirect methodsElectron densityFriedels lawGibbs phenomenonHarker constructionIsomorphous replacement