• 量子保密通信
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量子保密通信

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作者曾贵华 著

出版社高等教育出版社

出版时间2010-01

版次1

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图书标准信息
  • 作者 曾贵华 著
  • 出版社 高等教育出版社
  • 出版时间 2010-01
  • 版次 1
  • ISBN 9787040254792
  • 定价 59.00元
  • 装帧 精装
  • 开本 16开
  • 纸张 胶版纸
  • 页数 368页
  • 字数 450千字
  • 正文语种 英语
  • 丛书 信息安全系列丛书
【内容简介】
QuantumPrivateCommunicationcoversthefundamentalsoftheareasofsecurecommunication,quantumcryptography,quantumcommunication,andtheirphysicalimplementationwithapplications.Thebookappearsinatimelymannerforanemergingfieldatthecrossroadofclassicprivatecommunicationandquantumphysics.
Graduatestudentsandscientistsalikeincommunicationengineering,computerscience,electronicengineering,physicsandmathematicswillbenefitfromthebook.
【作者简介】
ProfessorGuihuaZengteachesandconductsresearchattheDepartmentofElectronicEngineeringofShanghaiJiaoTongUniversityandspentanAlexandervonHumboldtFellowshipattheUniversityofFreiburg,Germany.
【目录】
1Introduction
1.1SecurityRequirementsofCommunication
1.2OverviewofQuantumPrivateCommunication
1.3PrivateCommunicationModels
1.3.1ClassicSecureCommunicationModel
1.3.2QuantumPrivateCommunicationModel
1.4HistoryofQuantumPrivateCommunication
1.5RelationshipwithOtherSubjects
1.6NotationsandConventions
1.6.1RandomVariables
1.6.2CryptosystemandCipher
References

2QuantumSecurityTheory
2.1Introduction
2.2MathematicalBackground
2.2.1HilbertSpace
2.2.2PropertiesofHilbertSpace
2.2.3Operators
2.2.4SeveralImportantOperators
2.2.5MatricesDecomposition
2.3IntroductiontoQuantumMechanics
2.3.1QuantumSystems
2.3.2DynamicCharacteristicsofQuantumSystems
2.3.3InformationRetrievalofQuantumSystems
2.3.4FundamentofQuantumOptics
2.4IntroductiontoInformationTheory
2.4.1Entropy
2.4.2MutualInformation
2.4.3QuantumFanoInequality
2.5IntroductiontoComplexityTheory
2.5.1TuringMachine
2.5.2ClassicComplexity
2.5.3QuantumComplexity
2.6SecurityModel
2.6.1Information-theoreticSecurity
2.6.2ComputationalSecurity
2.6.3AttackStrategyAnalysis
References

3QuantumBits
3.1ClassicBits
3.2QuantumBitDefinition
3.2.1BinaryQubit
3.2.2P-aryQubit
3.2.3CompositeQubit
3.3QuantumBitTransformation
3.3.1QuantumLogicGates
3.3.2QuantumCircuits
3.4MathematicalProperty
3.4.1BlochSphere
3.4.2OrthogonalityofOppositePoints
3.4.3RotationsonBlochSphere
3.5PhysicalProperty
3.5.1Superposition
3.5.2Entanglement
3.5.3Distinguishability
3.5.4QuantumNo-cloning
3.6InformationProperty
3.6.1SingleQubitInformation
3.6.2NonorthogonalQubitsInformation
References

4QuantumKeyDistribution
4.1IntuitiononQKD
4.2StandardQKDSchemes
4.2.1BB84Protocol
4.2.2B92Protocol
4.3QuantumCommunicationModelforQKD
4.3.1QuantumSource
4.3.2QuantumChannel
4.3.3QuantumSink
4.4Reconciliation
4.4.1ReconciliationModel
4.4.2BinaryReconciliationProtocol
4.4.3Non-BinaryReconciliationProtocol
4.5PrivacyAmplification
4.5.1PrivacyAmplificationPrinciple
4.5.2PrivacyAmplificationTechniques
4.6SecurityModelforQKD
4.6.1SecurityTheory
4.6.2TypicalAttackStrategies
References

5QuantumCryptosystem
5.1Introduction
5.2QKD-basedCryptosystem
5.3QuantumVernamCipher
5.3.1ClassicVernamAlgorithm
5.3.2QuantumVernamCipher
5.3.3PrivateQuantumChannel
5.3.4SecurityModel
5.4TypicalQuantumVernamCiphers
5.4.1Classic-key-basedQuantumVernamCipher
5.4.2Bell-key-basedQuantumVernamCipher
5.4.3TeleportationasQuantumVernamCipher
5.5QuantumBlockCipher
5.5.1TheoreticalModel
5.5.2QuantumBlockAlgorithmforBinaryBits
5.6QuantumPublicKeyCryptosystem
5.7TypicalQuantumPublic-keyAlgorithms
5.7.1AlgorithmbasedSubset-sumProblem
5.7.2AlgorithmbasedQuantumCoding
References

6QuantumAuthentication
6.1Introduction
6.2AuthenticationTheory
6.2.1AuthenticationCategories
6.2.2SecurityModel
6.3MessageAuthenticationCode
6.3.1EncodingApproach
6.3.2HashFunctionApproach
6.4QuantumIdentityAuthentication
6.4.1SchemeDescription
6.4.2SecurityAnalysis
6.4.3InImperfectChannel
6.5QuantumSignaturePrinciple
6.6ArbitratedQuantumSignature
6.6.1AlgorithmDescription
6.6.2SecurityAnalysis
6.7TrueQuantumSignature
6.7.1AlgorithmDescription
6.7.2SecurityAnalysis
……
Index
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