Propagation vector — where it appears
Named by 2 essays across one field — each of them below, with the objects they name alongside it.
Magnetic reflections land where nuclear ones cannot
An antiferromagnet scatters neutrons into places its chemical structure leaves dark, and never into a place it lights. The reason is one line of algebra: the magnetic pattern is the nuclear pattern shifted by half a reciprocal-lattice vector. Each of a lattice's seven halvings is one such shift, and how many of them its symmetry keeps decides how many kinds of domain the magnet must form.
Where a powder goes blind
A neutron sees only the part of a magnetic moment across its path, so each reflection knows which way the moments point. A powder adds up every reflection of a given length, and for a ring with cubic symmetry that sum comes out the same whichever way they point. But the ring's symmetry is not the chemistry's: it is the symmetry the propagation vector keeps, and most cubic antiferromagnets have lost enough of it to be read.
Named alongside it
The objects these essays reach for when they reach for this one.
Domain stateTime reversalHolohedryIndex two subgroupLaue classOrbit-stabiliserPowder diffractionProperty tensorReciprocal latticeStabiliserStructure factorSuperlattice reflection