Absolutely maximally entangled (AME) states are those multipartite quantum states that carry absolute maximum entanglement in all possible bipartitions. AME states are known to play a relevant role in multipartite teleportation, in quantum secret sharing, and they provide the basis novel tensor networks related to holography. We present alternative constructions of AME states and show their link with combinatorial designs. We also analyze a key property of AME states, namely, their relation to tensors, which can be understood as unitary transformations in all of their bipartitions. We call this property multiunitarity.Grant FIS2013-41757-
Holographic systems require monogamous mutual information for validity of semiclassical geometry. Th...
We investigate quantum states that possess both maximum entanglement and maximum discord between the...
We extend the relation between absolutely maximally entangled (AME) states and quantum maximum dista...
Absolutely maximally entangled (AME) states are those multipartite quantum states that carry absolut...
We investigate absolutely maximally entangled (AME) states, which are multipartite quantum states th...
A pure multipartite quantum state is called absolutely maximally entangled (AME), if all reductions ...
Absolutely maximally entangled (AME) states are multipartite entan-gled states that are maximally en...
Dual unitary gates are highly non-local two-qudit unitary gates that have been studied extensively i...
One way to explore multiparticle entanglement is to ask for maximal entanglement with respect to dif...
Most applications in quantum information processing make either explicit or implicit use of entangle...
Abstract We introduce a new information-theoretic measure of multipartite correlations Δ P , by gene...
We consider the class of (N + 1)-partite states suitable for protocols where there is a powerful par...
Entanglement is one of the fundamental features of quantum information science. Though bipartite en...
Multipartite quantum states constitute the key resource for quantum computation. The understanding o...
We introduce the notion of maximally multipartite entangled states of n qubits as a generalization o...
Holographic systems require monogamous mutual information for validity of semiclassical geometry. Th...
We investigate quantum states that possess both maximum entanglement and maximum discord between the...
We extend the relation between absolutely maximally entangled (AME) states and quantum maximum dista...
Absolutely maximally entangled (AME) states are those multipartite quantum states that carry absolut...
We investigate absolutely maximally entangled (AME) states, which are multipartite quantum states th...
A pure multipartite quantum state is called absolutely maximally entangled (AME), if all reductions ...
Absolutely maximally entangled (AME) states are multipartite entan-gled states that are maximally en...
Dual unitary gates are highly non-local two-qudit unitary gates that have been studied extensively i...
One way to explore multiparticle entanglement is to ask for maximal entanglement with respect to dif...
Most applications in quantum information processing make either explicit or implicit use of entangle...
Abstract We introduce a new information-theoretic measure of multipartite correlations Δ P , by gene...
We consider the class of (N + 1)-partite states suitable for protocols where there is a powerful par...
Entanglement is one of the fundamental features of quantum information science. Though bipartite en...
Multipartite quantum states constitute the key resource for quantum computation. The understanding o...
We introduce the notion of maximally multipartite entangled states of n qubits as a generalization o...
Holographic systems require monogamous mutual information for validity of semiclassical geometry. Th...
We investigate quantum states that possess both maximum entanglement and maximum discord between the...
We extend the relation between absolutely maximally entangled (AME) states and quantum maximum dista...