Paradoxical set


In set theory, a paradoxical set is a set that has a paradoxical decomposition. A paradoxical decomposition of a set is two families of disjoint subsets, along with appropriate group actions that act on some universe, such that each partition can be mapped back onto the entire set using only finitely many distinct functions to accomplish the mapping. A set that admits such a paradoxical decomposition where the actions belong to a group is called -paradoxical or paradoxical with respect to.
Paradoxical sets exist as a consequence of the Axiom of Infinity. Admitting infinite classes as sets is sufficient to allow paradoxical sets.

Definition

Suppose a group acts on a set. Then is -paradoxical if there exists some disjoint subsets and some group elements such that:
and

Examples

Free group

The Free group F on two generators a,b has the decomposition where e is the identity word and is the collection of all words that start with the letter i. This is a paradoxical decomposition because

Banach–Tarski paradox

The most famous, and indeed motivational, example of paradoxical sets is the Banach–Tarski paradox, which divides the sphere into paradoxical sets for the special orthogonal group. This result depends on the axiom of choice.