dorsal/arxiv
View SchemaCharacterizing the combinatorics of distributed EPR pairs for multi-partite entanglement
| Authors | Sudhir Kumar Singh, Somesh Kumar, Sudebkumar Prasant Pal |
|---|---|
| Categories | |
| ArXiv ID | quant-ph/0306049 |
| URL | https://arxiv.org/abs/quant-ph/0306049 |
Abstract
We develop protocols for preparing a GHZ state and, in general,a pure multi-partite maximally entangled state in a distributed network with apriori quantum entanglement between agents using classical communication and local operations. We investigate and characterize the minimal combinatorics of the sharing of EPR pairs required amongst agents in a network for the creation of multi-partite entanglement. We also characterize the minimal combinatorics of agents in the creation of pure maximal multi-partite entanglement amongst the set $N$ of $n$ agents in a network using apriori multi-partite entanglement states amongst subsets of $N$. We propose protocols for establishing multi-partite entanglement in the above cases.
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"abstract": "We develop protocols for preparing a GHZ state and, in general,a pure\nmulti-partite maximally entangled state in a distributed network with apriori\nquantum entanglement between agents using classical communication and local\noperations. We investigate and characterize the minimal combinatorics of the\nsharing of EPR pairs required amongst agents in a network for the creation of\nmulti-partite entanglement. We also characterize the minimal combinatorics of\nagents in the creation of pure maximal multi-partite entanglement amongst the\nset $N$ of $n$ agents in a network using apriori multi-partite entanglement\nstates amongst subsets of $N$. We propose protocols for establishing\nmulti-partite entanglement in the above cases.",
"arxiv_id": "quant-ph/0306049",
"authors": [
"Sudhir Kumar Singh",
"Somesh Kumar",
"Sudebkumar Prasant Pal"
],
"categories": [
"quant-ph"
],
"title": "Characterizing the combinatorics of distributed EPR pairs for multi-partite entanglement",
"url": "https://arxiv.org/abs/quant-ph/0306049"
},
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"variant": "snapshot-2026-03-01",
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