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Quantum information theory [electronic resource] : mathematical foundation / 2nd ed

Quantum information theory [electronic resource] : mathematical foundation / 2nd ed

자료유형
E-Book(소장)
개인저자
Hayashi, Masahito.
단체저자명
SpringerLink (Online service).
서명 / 저자사항
Quantum information theory [electronic resource] : mathematical foundation / Masahito Hayashi.
판사항
2nd ed.
발행사항
Berlin, Germany :   Springer,   c2017.  
형태사항
1 online resource (xliii, 636 p.) : ill.
총서사항
Graduate texts in physics,1868-4513
ISBN
9783662497234 9783662497258 (eBook)
요약
This graduate textbook provides a unified view of quantum information theory. Clearly explaining the necessary mathematical basis, it merges key topics from both information-theoretic and quantum- mechanical viewpoints and provides lucid explanations of the basic results. Thanks to this unified approach, it makes accessible such advanced topics in quantum communication as quantum teleportation, superdense coding, quantum state transmission (quantum error-correction) and quantum encryption. Since the publication of the preceding book Quantum Information: An Introduction, there have been tremendous strides in the field of quantum information. In particular, the following topics – all of which are addressed here – made seen major advances: quantum state discrimination, quantum channel capacity, bipartite and multipartite entanglement, security analysis on quantum communication, reverse Shannon theorem and uncertainty relation. With regard to the analysis of quantum security, the present book employs an improved method for the evaluation of leaked information and identifies a remarkable relation between quantum security and quantum coherence. Taken together, these two improvements allow a better analysis of quantum state transmission. In addition, various types of the newly discovered uncertainty relation are explained. Presenting a wealth of new developments, the book introduces readers to the latest advances and challenges in quantum information. To aid in understanding, each chapter is accompanied by a set of exercises and solutions.
일반주기
Title from e-Book title page.  
내용주기
Invitation to Quantum Information Theory -- History of Quantum Information Theory -- The Structure of this Text -- Mathematical Formulation of Quantum Systems -- Information Quantities and Parameter Estimation in Classical Systems -- Quantum Hypothesis Testing and Discrimination of Quantum States -- Classical-Quantum Channel Coding (Message Transmission) -- State Evolution and Trace-Preserving Completely Positive Maps -- Quantum Information Geometry and Quantum Estimation -- Quantum Measurements and State Reduction -- Entanglement and Locality Restrictions -- Analysis of Quantum Communication Protocols.
서지주기
Includes bibliographical references and index.
이용가능한 다른형태자료
Issued also as a book.  
일반주제명
Quantum computing --Mathematics.
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100 1 ▼a Hayashi, Masahito.
245 1 0 ▼a Quantum information theory ▼h [electronic resource] : ▼b mathematical foundation / ▼c Masahito Hayashi.
250 ▼a 2nd ed.
260 ▼a Berlin, Germany : ▼b Springer, ▼c c2017.
300 ▼a 1 online resource (xliii, 636 p.) : ▼b ill.
490 1 ▼a Graduate texts in physics, ▼x 1868-4513
500 ▼a Title from e-Book title page.
504 ▼a Includes bibliographical references and index.
505 0 ▼a Invitation to Quantum Information Theory -- History of Quantum Information Theory -- The Structure of this Text -- Mathematical Formulation of Quantum Systems -- Information Quantities and Parameter Estimation in Classical Systems -- Quantum Hypothesis Testing and Discrimination of Quantum States -- Classical-Quantum Channel Coding (Message Transmission) -- State Evolution and Trace-Preserving Completely Positive Maps -- Quantum Information Geometry and Quantum Estimation -- Quantum Measurements and State Reduction -- Entanglement and Locality Restrictions -- Analysis of Quantum Communication Protocols.
520 ▼a This graduate textbook provides a unified view of quantum information theory. Clearly explaining the necessary mathematical basis, it merges key topics from both information-theoretic and quantum- mechanical viewpoints and provides lucid explanations of the basic results. Thanks to this unified approach, it makes accessible such advanced topics in quantum communication as quantum teleportation, superdense coding, quantum state transmission (quantum error-correction) and quantum encryption. Since the publication of the preceding book Quantum Information: An Introduction, there have been tremendous strides in the field of quantum information. In particular, the following topics – all of which are addressed here – made seen major advances: quantum state discrimination, quantum channel capacity, bipartite and multipartite entanglement, security analysis on quantum communication, reverse Shannon theorem and uncertainty relation. With regard to the analysis of quantum security, the present book employs an improved method for the evaluation of leaked information and identifies a remarkable relation between quantum security and quantum coherence. Taken together, these two improvements allow a better analysis of quantum state transmission. In addition, various types of the newly discovered uncertainty relation are explained. Presenting a wealth of new developments, the book introduces readers to the latest advances and challenges in quantum information. To aid in understanding, each chapter is accompanied by a set of exercises and solutions.
530 ▼a Issued also as a book.
538 ▼a Mode of access: World Wide Web.
650 0 ▼a Quantum computing ▼x Mathematics.
710 2 ▼a SpringerLink (Online service).
830 0 ▼a Graduate texts in physics.
856 4 0 ▼u https://oca.korea.ac.kr/link.n2s?url=https://doi.org/10.1007/978-3-662-49725-8
945 ▼a KLPA
991 ▼a E-Book(소장)

소장정보

No. 소장처 청구기호 등록번호 도서상태 반납예정일 예약 서비스
No. 1 소장처 중앙도서관/e-Book 컬렉션/ 청구기호 CR 004.1 등록번호 E14013735 도서상태 대출불가(열람가능) 반납예정일 예약 서비스 M

컨텐츠정보

목차

Invitation to Quantum Information Theory
History of Quantum Information Theory
The Structure of this Text
Mathematical Formulation of Quantum Systems
Information Quantities and Parameter Estimation in Classical Systems
Quantum Hypothesis Testing and Discrimination of Quantum States
Classical-Quantum Channel Coding (Message Transmission)
State Evolution and Trace-Preserving Completely Positive Maps
Quantum Information Geometry and Quantum Estimation
Quantum Measurements and State Reduction
Entanglement and Locality Restrictions
Analysis of Quantum Communication Protocols.

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