Idioma: Inglés
Publicado por Oxford University Press, 2019
ISBN 10: 0198739613 ISBN 13: 9780198739616
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Idioma: Inglés
Publicado por Oxford University Press, 2019
ISBN 10: 0198739613 ISBN 13: 9780198739616
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Idioma: Inglés
Publicado por Oxford University Press, GB, 2019
ISBN 10: 0198739613 ISBN 13: 9780198739616
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Añadir al carritoPaperback. Condición: New. Monoidal category theory serves as a powerful framework for describing logical aspects of quantum theory, giving an abstract language for parallel and sequential composition, and a conceptual way to understand many high-level quantum phenomena. This text lays the foundation for this categorical quantum mechanics, with an emphasis on the graphical calculus which makes computation intuitive. Biproducts and dual objects are introduced and used to model superposition and entanglement, with quantum teleportation studied abstractly using these structures. Monoids, Frobenius structures and Hopf algebras are described, and it is shown how they can be used to model classical information and complementary observables. The CP construction, a categorical tool to describe probabilistic quantum systems, is also investigated. The last chapter introduces higher categories, surface diagrams and 2-Hilbert spaces, and shows how the language of duality in monoidal 2-categories can be used to reason about quantum protocols, including quantum teleportation and dense coding.Prior knowledge of linear algebra, quantum information or category theory would give an ideal background for studying this text, but it is not assumed, with essential background material given in a self-contained introductory chapter. Throughout the text links with many other areas are highlighted, such as representation theory, topology, quantum algebra, knot theory, and probability theory, and nonstandard models are presented, such as sets and relations. All results are stated rigorously, and full proofs are given as far as possible, making this book an invaluable reference for modern techniques in quantum logic, with much of the material not available in any other textbook.
Idioma: Inglés
Publicado por Oxford University Press, 2019
ISBN 10: 0198739613 ISBN 13: 9780198739616
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Idioma: Inglés
Publicado por Oxford University Press, 2019
ISBN 10: 0198739613 ISBN 13: 9780198739616
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Idioma: Inglés
Publicado por Oxford University Press, 2019
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Idioma: Inglés
Publicado por Oxford University Press, 2019
ISBN 10: 0198739613 ISBN 13: 9780198739616
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Idioma: Inglés
Publicado por Oxford University Press, 2020
ISBN 10: 0198739621 ISBN 13: 9780198739623
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Idioma: Inglés
Publicado por Oxford University Press OUP, 2013
ISBN 10: 0199646295 ISBN 13: 9780199646296
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Idioma: Inglés
Publicado por Oxford University Press, 2013
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Idioma: Inglés
Publicado por Oxford University Press, 2013
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Idioma: Inglés
Publicado por Oxford University Press, 2020
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Idioma: Inglés
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Idioma: Inglés
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Idioma: Inglés
Publicado por Oxford University Press, GB, 2019
ISBN 10: 0198739613 ISBN 13: 9780198739616
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Añadir al carritoPaperback. Condición: New. Monoidal category theory serves as a powerful framework for describing logical aspects of quantum theory, giving an abstract language for parallel and sequential composition, and a conceptual way to understand many high-level quantum phenomena. This text lays the foundation for this categorical quantum mechanics, with an emphasis on the graphical calculus which makes computation intuitive. Biproducts and dual objects are introduced and used to model superposition and entanglement, with quantum teleportation studied abstractly using these structures. Monoids, Frobenius structures and Hopf algebras are described, and it is shown how they can be used to model classical information and complementary observables. The CP construction, a categorical tool to describe probabilistic quantum systems, is also investigated. The last chapter introduces higher categories, surface diagrams and 2-Hilbert spaces, and shows how the language of duality in monoidal 2-categories can be used to reason about quantum protocols, including quantum teleportation and dense coding.Prior knowledge of linear algebra, quantum information or category theory would give an ideal background for studying this text, but it is not assumed, with essential background material given in a self-contained introductory chapter. Throughout the text links with many other areas are highlighted, such as representation theory, topology, quantum algebra, knot theory, and probability theory, and nonstandard models are presented, such as sets and relations. All results are stated rigorously, and full proofs are given as far as possible, making this book an invaluable reference for modern techniques in quantum logic, with much of the material not available in any other textbook.
Idioma: Inglés
Publicado por Oxford University Press, 2020
ISBN 10: 0198739621 ISBN 13: 9780198739623
Librería: GreatBookPricesUK, Woodford Green, Reino Unido
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Idioma: Inglés
Publicado por Oxford University Press, Oxford, 2019
ISBN 10: 0198739621 ISBN 13: 9780198739623
Librería: Grand Eagle Retail, Bensenville, IL, Estados Unidos de America
EUR 154,85
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Añadir al carritoHardcover. Condición: new. Hardcover. Monoidal category theory serves as a powerful framework for describing logical aspects of quantum theory, giving an abstract language for parallel and sequential composition, and a conceptual way to understand many high-level quantum phenomena. This text lays the foundation for this categorical quantum mechanics, with an emphasis on the graphical calculus which makes computation intuitive. Biproducts and dual objects are introduced and used to model superpositionand entanglement, with quantum teleportation studied abstractly using these structures. Monoids, Frobenius structures and Hopf algebras are described, and it is shown how they can be used to modelclassical information and complementary observables. The CP construction, a categorical tool to describe probabilistic quantum systems, is also investigated. The last chapter introduces higher categories, surface diagrams and 2-Hilbert spaces, and shows how the language of duality in monoidal 2-categories can be used to reason about quantum protocols, including quantum teleportation and dense coding.Prior knowledge of linear algebra, quantum information or category theorywould give an ideal background for studying this text, but it is not assumed, with essential background material given in a self-contained introductory chapter. Throughout the text links with manyother areas are highlighted, such as representation theory, topology, quantum algebra, knot theory, and probability theory, and nonstandard models are presented, such as sets and relations. All results are stated rigorously, and full proofs are given as far as possible, making this book an invaluable reference for modern techniques in quantum logic, with much of the material not available in any other textbook. Categories for Quantum Theory: An Introduction lays foundations for an approach to quantum theory that uses category theory, a branch of pure mathematics. Prior knowledge of quantum information theory or category theory helps, but is not assumed, and basic linear algebra and group theory suffices. Shipping may be from multiple locations in the US or from the UK, depending on stock availability.
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Añadir al carritoCondición: New.
Idioma: Inglés
Publicado por Oxford University Press, Oxford, 2013
ISBN 10: 0199646295 ISBN 13: 9780199646296
Librería: Grand Eagle Retail, Bensenville, IL, Estados Unidos de America
EUR 160,56
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Añadir al carritoHardcover. Condición: new. Hardcover. New scientific paradigms typically consist of an expansion of the conceptual language with which we describe the world. Over the past decade, theoretical physics and quantum information theory have turned to category theory to model and reason about quantum protocols. This new use of categorical and algebraic tools allows a more conceptual and insightful expression of elementary events such as measurements, teleportation and entanglement operations, that wereobscured in previous formalisms. Recent work in natural language semantics has begun to use these categorical methods to relate grammatical analysis and semantic representations in aunified framework for analysing language meaning, and learning meaning from a corpus. A growing body of literature on the use of categorical methods in quantum information theory and computational linguistics shows both the need and opportunity for new research on the relation between these categorical methods and the abstract notion of information flow. This book supplies an overview of how categorical methods are used to model information flow in both physics andlinguistics. It serves as an introduction to this interdisciplinary research, and provides a basis for future research and collaboration between the different communities interested in applying categorytheoretic methods to their domain's open problems. An interdisciplinary attempt to bring together physicists and linguists who use the same compositional mathematical methods. Although seemingly unrelated, due to the complexity and dynamics of the compound phenomena they aim to model, and also advances in their high level methods, these fields have come to share a common mathematical structure. Shipping may be from multiple locations in the US or from the UK, depending on stock availability.
Idioma: Inglés
Publicado por Oxford University Press, 2020
ISBN 10: 0198739621 ISBN 13: 9780198739623
Librería: GreatBookPricesUK, Woodford Green, Reino Unido
EUR 145,20
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Idioma: Inglés
Publicado por Oxford University Press, GB, 2019
ISBN 10: 0198739621 ISBN 13: 9780198739623
Librería: Rarewaves.com USA, London, LONDO, Reino Unido
EUR 166,40
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Añadir al carritoHardback. Condición: New. Monoidal category theory serves as a powerful framework for describing logical aspects of quantum theory, giving an abstract language for parallel and sequential composition, and a conceptual way to understand many high-level quantum phenomena. This text lays the foundation for this categorical quantum mechanics, with an emphasis on the graphical calculus which makes computation intuitive. Biproducts and dual objects are introduced and used to model superposition and entanglement, with quantum teleportation studied abstractly using these structures. Monoids, Frobenius structures and Hopf algebras are described, and it is shown how they can be used to model classical information and complementary observables. The CP construction, a categorical tool to describe probabilistic quantum systems, is also investigated. The last chapter introduces higher categories, surface diagrams and 2-Hilbert spaces, and shows how the language of duality in monoidal 2-categories can be used to reason about quantum protocols, including quantum teleportation and dense coding.Prior knowledge of linear algebra, quantum information or category theory would give an ideal background for studying this text, but it is not assumed, with essential background material given in a self-contained introductory chapter. Throughout the text links with many other areas are highlighted, such as representation theory, topology, quantum algebra, knot theory, and probability theory, and nonstandard models are presented, such as sets and relations. All results are stated rigorously, and full proofs are given as far as possible, making this book an invaluable reference for modern techniques in quantum logic, with much of the material not available in any other textbook.
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Idioma: Inglés
Publicado por Oxford University Press, 2013
ISBN 10: 0199646295 ISBN 13: 9780199646296
Librería: THE SAINT BOOKSTORE, Southport, Reino Unido
EUR 156,47
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Añadir al carritoHardback. Condición: New. New copy - Usually dispatched within 4 working days.
Idioma: Inglés
Publicado por Oxford University Press, 2020
ISBN 10: 0198739621 ISBN 13: 9780198739623
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Librería: GreatBookPricesUK, Woodford Green, Reino Unido
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