Extra dimensions — where it appears
Named by 2 essays across 2 fields — each of them below, with the objects they name alongside it.
The scale that may not be where it looks
Every Planck number assumes gravity is four-dimensional all the way down. If it is not — if the field spreads into dimensions compact enough to have escaped notice — the true scale where gravity becomes strong could be at a TeV, and the whole remoteness of the Planck scale would be an artefact of where the field lines go. It is the one part of the subject an experiment can address, and the experiments have addressed it.
The number of dimensions a planet can orbit in
Gauss's law says that a point source's field is its strength spread over the surface around it, and the size of that surface depends on how many dimensions space has. In three it grows as the square of the distance, and the field falls as the inverse square. Count differently and the field falls differently — and above three dimensions it falls so steeply that no planet could hold a stable orbit and no atom could hold its electron. The inverse-square law is not a fact about gravity or electricity. It is a fact about space, and it is one of the conditions for there being anything in space to orbit.
Named alongside it
The objects these essays reach for when they reach for this one.
Black holeDimensional analysisDimensionsEffective potentialEnergyFine tuningGauss's lawGravitationThe inverse-square lawMeasurementOrbitPlanck scale