dorsal/arxiv
View SchemaThe Quantum Entanglement of Binary and Bipolar Sequences
| Authors | M. G. Parker, V. Rijmen |
|---|---|
| Categories | |
| ArXiv ID | quant-ph/0107106 |
| URL | https://arxiv.org/abs/quant-ph/0107106 |
| Journal | Sequences and Their Applications, SETA'01, Discrete Mathematics and Theoretical Computer Science Series, Springer, 2001, Ed.: T.Helleseth, P.V.Kumar and K.Yang |
Abstract
Classification of different forms of quantum entanglement is an active area of research, central to development of effective quantum computers, and similar to classification of error-correction codes, where code duality is broadened to equivalence under all 'local' unitary transforms. We explore links between entanglement, coding theory, and sequence design, by examining multi-spectra of quantum states under local unitary action, and show that optimal error-correcting codes and sequences represent states with high multiparticle entanglement.
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"abstract": "Classification of different forms of quantum entanglement is an active area\nof research, central to development of effective quantum computers, and similar\nto classification of error-correction codes, where code duality is broadened to\nequivalence under all \u0027local\u0027 unitary transforms. We explore links between\nentanglement, coding theory, and sequence design, by examining multi-spectra of\nquantum states under local unitary action, and show that optimal\nerror-correcting codes and sequences represent states with high multiparticle\nentanglement.",
"arxiv_id": "quant-ph/0107106",
"authors": [
"M. G. Parker",
"V. Rijmen"
],
"categories": [
"quant-ph"
],
"journal_ref": "Sequences and Their Applications, SETA\u002701, Discrete Mathematics\n and Theoretical Computer Science Series, Springer, 2001, Ed.: T.Helleseth,\n P.V.Kumar and K.Yang",
"title": "The Quantum Entanglement of Binary and Bipolar Sequences",
"url": "https://arxiv.org/abs/quant-ph/0107106"
},
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