The maximally entangled set of multipartite quantum states
Julio I. de Vicente, Cornelia Spee, Barbara Kraus

TL;DR
This paper introduces the concept of the Maximally Entangled Set (MES) for multipartite quantum states, characterizing it for three and four qubits, and highlighting differences from bipartite entanglement.
Contribution
It defines and determines the MES for three and four qubits, providing a simple characterization and analyzing the measure and properties of these sets.
Findings
The MES for 3-qubit states has measure zero.
Almost all 4-qubit states are in the MES.
Deterministic LOCC transformations are rare among 4-qubit states.
Abstract
Entanglement is a resource in quantum information theory when state manipulation is restricted to Local Operations assisted by Classical Communication (LOCC). It is therefore of paramount importance to decide which LOCC transformations are possible and, particularly, which states are maximally useful under this restriction. While the bipartite maximally entangled state is well known (it is the only state that cannot be obtained from any other and, at the same time, it can be transformed to any other by LOCC), no such state exists in the multipartite case. In order to cope with this fact, we introduce here the notion of the Maximally Entangled Set (MES) of n-partite states. This is the set of states which are maximally useful under LOCC manipulation, i.e. any state outside of this set can be obtained via LOCC from one of the states within the set and no state in the set can be obtained…
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