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arxiv: 1404.3586 · v2 · pith:XZXY6NSYnew · submitted 2014-04-14 · 🪐 quant-ph

Genuinely multipartite entangled states and orthogonal arrays

classification 🪐 quant-ph
keywords statesuniformclassk-uniformarraysentangledestablishexistence
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A pure quantum state of N subsystems with d levels each is called k-multipartite maximally entangled state, written k-uniform, if all its reductions to k qudits are maximally mixed. These states form a natural generalization of N-qudits GHZ states which belong to the class 1-uniform states. We establish a link between the combinatorial notion of orthogonal arrays and k-uniform states and prove the existence of several new classes of such states for N-qudit systems. In particular, known Hadamard matrices allow us to explicitly construct 2-uniform states for an arbitrary number of N>5 qubits. We show that finding a different class of 2-uniform states would imply the Hadamard conjecture, so the full classification of 2-uniform states seems to be currently out of reach. Additionally, single vectors of another class of 2-uniform states are one-to-one related to maximal sets of mutually unbiased bases. Furthermore, we establish links between existence of k-uniform states, classical and quantum error correction codes and provide a novel graph representation for such states.

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  1. Graph restricted tensors: building blocks for holographic networks

    quant-ph 2025-12 unverdicted novelty 7.0

    Graph-restricted tensors generalize 1-uniform states, dual-unitary operators and AME states, with exact analytic solutions for new examples motivated by holographic lattice models.