Tidal torque theory — where it appears
Named by 4 essays across 2 fields — each of them below, with the objects they name alongside it.
A disc the size its halo was born with
A galaxy's mass says how much light it makes. It does not say how big it is. What sets a disc's size is a single dimensionless number describing how fast the dark halo around it happens to be turning — a number the disc had no part in choosing, distributed the same way for every halo mass in the universe.
Spin acquired before there was anything to spin
Every galaxy turns, and nothing in a smooth expanding universe turns. The rotation was applied while the material was still a mildly overdense patch spread across megaparsecs — torqued by the tidal field of its neighbours, growing steadily with time, and switching off the moment the patch stopped expanding.
The shape a galaxy was given before it was lensed
Weak lensing assumes that galaxies point in random directions, so that a coherent stretch can only have been put there by the light's journey. The tidal field that set every galaxy's spin also stretched its shape — towards the very mass that lenses the galaxies behind it — and the resulting error is not noise but a signal of the opposite sign.
A spin that remembers the field and not its sign
Tidal torque theory says where a galaxy's spin should point, not only how large it should be. It points along the middle axis of the tidal field, it is exactly perpendicular to an ideal filament, and it is an even function of the field — so a map of spins can find the directions of the cosmic web and can never say which of them is collapsing.
Named alongside it
The objects these essays reach for when they reach for this one.
Angular momentumLarge-scale structureSpin alignmentSpin parameterTidal tensorCorrelation functionGaussian random fieldInertia tensorIntrinsic alignmentLinear growthTurnaroundAdiabatic contraction