dorsal/arxiv
View SchemaMutual Entropy in Quantum Information and Information Genetics
| Authors | Masanori Ohya |
|---|---|
| Categories | |
| ArXiv ID | quant-ph/0406228 |
| URL | https://arxiv.org/abs/quant-ph/0406228 |
| Journal | QUANTUM INFORMATION, edited by T Hida & K Saito, 133-158, 1997 |
Abstract
After Shannon, entropy becomes a fundamental quantity to describe not only uncertainity or chaos of a system but also information carried by the system. Shannon's important discovery is to give a mathematical expression of the mutual entropy (information), information transmitted from an input system to an output system, by which communication processes could be analyzed on the stage of mathematical science. In this paper, first we review the quantum mutual entropy and discuss its uses in quantum information theory, and secondly we show how the classical mutual entropy can be used to analyze genomes, in particular, those of HIV.
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"abstract": "After Shannon, entropy becomes a fundamental quantity to describe not only\nuncertainity or chaos of a system but also information carried by the system.\nShannon\u0027s important discovery is to give a mathematical expression of the\nmutual entropy (information), information transmitted from an input system to\nan output system, by which communication processes could be analyzed on the\nstage of mathematical science. In this paper, first we review the quantum\nmutual entropy and discuss its uses in quantum information theory, and secondly\nwe show how the classical mutual entropy can be used to analyze genomes, in\nparticular, those of HIV.",
"arxiv_id": "quant-ph/0406228",
"authors": [
"Masanori Ohya"
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"journal_ref": "QUANTUM INFORMATION, edited by T Hida \u0026 K Saito, 133-158, 1997",
"title": "Mutual Entropy in Quantum Information and Information Genetics",
"url": "https://arxiv.org/abs/quant-ph/0406228"
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