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Quantum Information Theory and Quantum Statistics / by Dénes Petz.

Por: Colaborador(es): Tipo de material: TextoTextoSeries Theoretical and Mathematical PhysicsEditor: Berlin, Heidelberg : Springer Berlin Heidelberg, 2008Descripción: x, 216 páginas 10 ilustraciones recurso en líneaTipo de contenido:
  • texto
Tipo de medio:
  • computadora
Tipo de portador:
  • recurso en línea
ISBN:
  • 9783540746362
Formatos físicos adicionales: Edición impresa:: Sin títuloRecursos en línea:
Contenidos:
Prerequisites from Quantum Mechanics -- Information and its Measures -- Entanglement -- More About Information Quantities -- Quantum Compression -- Channels and Their Capacity -- Hypothesis Testing -- Coarse-grainings -- State Estimation -- Appendix: Auxiliary Linear and Convex Analysis.
Resumen: Based on lectures given by the author, this book focuses on providing reliable introductory explanations of key concepts of quantum information theory and quantum statistics - rather than on results. The mathematically rigorous presentation is supported by numerous examples and exercises and by an appendix summarizing the relevant aspects of linear analysis. Assuming that the reader is familiar with the content of standard undergraduate courses in quantum mechanics, probability theory, linear algebra and functional analysis, the book addresses graduate students of mathematics and physics as well as theoretical and mathematical physicists. Conceived as a primer to bridge the gap between statistical physics and quantum information, a field to which the author has contributed significantly himself, it emphasizes concepts and thorough discussions of the fundamental notions to prepare the reader for deeper studies, not least through the selection of well chosen exercises.
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Prerequisites from Quantum Mechanics -- Information and its Measures -- Entanglement -- More About Information Quantities -- Quantum Compression -- Channels and Their Capacity -- Hypothesis Testing -- Coarse-grainings -- State Estimation -- Appendix: Auxiliary Linear and Convex Analysis.

Based on lectures given by the author, this book focuses on providing reliable introductory explanations of key concepts of quantum information theory and quantum statistics - rather than on results. The mathematically rigorous presentation is supported by numerous examples and exercises and by an appendix summarizing the relevant aspects of linear analysis. Assuming that the reader is familiar with the content of standard undergraduate courses in quantum mechanics, probability theory, linear algebra and functional analysis, the book addresses graduate students of mathematics and physics as well as theoretical and mathematical physicists. Conceived as a primer to bridge the gap between statistical physics and quantum information, a field to which the author has contributed significantly himself, it emphasizes concepts and thorough discussions of the fundamental notions to prepare the reader for deeper studies, not least through the selection of well chosen exercises.

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