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
Genuine multipartite entanglement (GME) is considered a powerful form of entanglement since it corre...
Entanglement theory is usually formulated as a quantum resource theory in which the free operations ...
We propose a scheme for generating multipartite entangled coherent states via entanglement swapping,...
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...
Absolutely maximally entangled (AME) states are multipartite entan-gled states that are maximally en...
A pure multipartite quantum state is called absolutely maximally entangled (AME), if all reductions ...
Most applications in quantum information processing make either explicit or implicit use of entangle...
We introduce the notion of maximally multipartite entangled states of n qubits as a generalization o...
Highly entangled multipartite states such as k-uniform (k-UNI) and absolutely maximally entangled (A...
Dual unitary gates are highly non-local two-qudit unitary gates that have been studied extensively i...
A pure quantum state of N subsystems with d levels each is called k-multipartite maximally entangled...
We investigate multipartite entanglement for composite quantum systems in a pure state. Using the ge...
A necessary and sufficient condition for the maximal entanglement of bipartite nonorthogonal pure st...
Entanglement is one of the fundamental features of quantum information science. Though bipartite en...
Genuine multipartite entanglement (GME) is considered a powerful form of entanglement since it corre...
Entanglement theory is usually formulated as a quantum resource theory in which the free operations ...
We propose a scheme for generating multipartite entangled coherent states via entanglement swapping,...
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...
Absolutely maximally entangled (AME) states are multipartite entan-gled states that are maximally en...
A pure multipartite quantum state is called absolutely maximally entangled (AME), if all reductions ...
Most applications in quantum information processing make either explicit or implicit use of entangle...
We introduce the notion of maximally multipartite entangled states of n qubits as a generalization o...
Highly entangled multipartite states such as k-uniform (k-UNI) and absolutely maximally entangled (A...
Dual unitary gates are highly non-local two-qudit unitary gates that have been studied extensively i...
A pure quantum state of N subsystems with d levels each is called k-multipartite maximally entangled...
We investigate multipartite entanglement for composite quantum systems in a pure state. Using the ge...
A necessary and sufficient condition for the maximal entanglement of bipartite nonorthogonal pure st...
Entanglement is one of the fundamental features of quantum information science. Though bipartite en...
Genuine multipartite entanglement (GME) is considered a powerful form of entanglement since it corre...
Entanglement theory is usually formulated as a quantum resource theory in which the free operations ...
We propose a scheme for generating multipartite entangled coherent states via entanglement swapping,...