• 超弦和M理论导论(第2版)
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超弦和M理论导论(第2版)

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作者加来道雄 著

出版社世界图书出版公司

出版时间2010-04

版次2

装帧平装

货号A4

上书时间2024-12-20

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图书标准信息
  • 作者 加来道雄 著
  • 出版社 世界图书出版公司
  • 出版时间 2010-04
  • 版次 2
  • ISBN 9787510005701
  • 定价 59.00元
  • 装帧 平装
  • 开本 24开
  • 纸张 胶版纸
  • 页数 587页
  • 正文语种 英语
  • 丛书 物理学经典教材(影印版)
【内容简介】
超弦和M理论是现代物理学中最有趣最活跃的研究课题之一。该问题比较困难同时也充满争议,一些人称之为“终极理论”,这是因为超弦理论有可能解决困扰人们多年的难题,即统一二十世纪最伟大的两个理论:广义相对论和量子场论。《超弦和M理论导论(第2版)》全面细致地讲解超弦理论和该领域的最新研究进展,内容包括四维超弦,Kac-Moody代数,Teichmuller空间和Calabi-Yau流形,M理论和D膜,对偶和BPS关系,矩阵模型等,可以作为研究生教材,同时对研究人员也有参考价值。作者首先简要介绍了点粒子理论,然后利用费曼路径积分详细讨论超弦理论。超弦研究需要很多数学工具,书中分别作了介绍,如指标定理,同调论和Kahler流形等。在第二版中,作者对内容做了整体修订,并添加了M理论的三个新章节。阅读《超弦和M理论导论(第2版)》需要量子力学和相对论的基本知识。
读者对象:理论物理、高能物理、场论和弦论等专业的高年级本科生、研究生和相关专业的科研人员。
【作者简介】
作者:(美国)加来道雄
【目录】
Preface
Acknowledgments
ⅠFirstQuantizationandPathIntegrals
1PathIntegralsandPointParticles
1.1WhyStrings?
1.2HistoricalReviewofGaugeTheory
1.3PathIntegralsandPointParticles
1.4RelativisticPointParticles
1.5FirstandSecondQuantization
1.6Faddeev-PopovQuantization
1.7SecondQuantization
1.8HarmonicOscillators
1.9CurrentsandSecondQuantization
1.10Summary
References

2Nambu-GotoStrings
2.1BosonicStrings
2.2Gupta-BleulerQuantization
2.3LightConeQuantization
2.4BRSTQuantization
2.5Trees
2.6FromPathIntegralstoOperators
2.7ProjectiveInvarianceandTwists
2.8ClosedStrings
2.9GhostElimination
2.100Summary
References

3Superstrings
3.1SupersymmetricPointParticles
3.2Two-DimensionalSupersymmetry
3.3Trees
3.4LocalTwo-DimensionalSupersymmetry
3.5Quantization
3.6GSOProjection
3.7Superstrings
3.8LightConeQuantizationoftheGSAction
3.9VerticesandTrees
3.10Summary
References

4ConformalFieldTheoryandKac——MoodyAlgebras
4.1ConformalFieldTheory
4.2SuperconformalFieldTheory
4.3SpinFields
4.4SuperconformalGhosts
4.5FermionVertex
4.6SpinorsandTrees
4.7Kac-MoodyAlgebras
4.8Supersymmetry
4.9Summary
References

5MulfiloopsandTeichmullerSpaces
5.1Unitarity
5.2Single-LoopAmplitude
5.3HarmonicOscillators
5.4Single-LoopSuperstringAmplitudes
5.5ClosedLoops
5.6MultiloopAmplitudes
5.7RiemannSurfacesandTeichmiillerSpaces
5.8ConformalAnomaly
5.9Superstrings
5.10DeterminantsandSingularities
5.11ModuliSpaceandGrassmannians
5.12Summary
References
ⅡSecondQuantizationandtheSearchforGeometry

6LightConeFieldTheory
6.1WhyStringFieldTheory?
6.2DerivingPointParticleFieldTheory
6.3LightConeFieldTheory
6.4Interactions
6.5NeumannFunctionMethod
6.6EquivalenceoftheScatteringAmplitudes
6.7Four-StringInteraction
6.8SuperstringFieldTheory
6.9Summary
References

7BRSTFieldTheory
7.1CovariantStringFieldTheory
7.2BRSTFieldTheory
7.3GaugeFixing
7.4Interactions
7.5Witten'sStringFieldTheory
7.6ProofofEquivalence
7.7ClosedStringsandSuperstrings
7.8Summary
References
ⅢPhenomenologyandModelBuilding

8AnomaliesandtheAtiyah-SingerTheorem
8.1BeyondGUTPhenomenology
8.2AnomaliesandFeynmanDiagrams
8.3AnomaliesintheFunctionalFormalism
8.4AnomaliesandCharacteristicClasses
8.5DiracIndex
8.6GravitationalandGaugeAnomalies
8.7AnomalyCancellationinStrings
8.8Summary
References

9HeteroticStringsandCompactification
9.1Compactification
9.2TheHeteroticString
9.3Spectrum
9.4CovariantandFermionicFormulations
9.5Trees
9.6Single-LoopAmplitude
9.7EsandKac——MoodyAlgebras
9.8LorentzianLattices
9.9Summary
References

10Calabi——YauSpacesandOrbifolds
10.1Calabi-YauSpaces
10.2ReviewofdeRahmCohomology
10.3CohomologyandHomology
10.4K/ihlerManifolds
10.5EmbeddingtheSpinConnection
10.6FermionGenerations
10.7WilsonLines
10.8Orbifoids
10.9Four-DimensionalSuperstrings
10.10Summary
References
ⅣM-Theory

11M-TheoryandDuality
11.1Introduction
11.2DualityinPhysics
11.3WhyFiveStringTheories?
11.4T-Duality
11.5S-Duality
11.5.1TypeIIATheory
11.5.2TypeIIBTheory
11.5.3M-TheoryandTypeIIBTheory
11.5.4E8E8HeteroticString
11.5.5TypeIStrings
11.6Summary
References

12CompactificationsandBPSStates
12.1BPSStates
12.2SupersymmetryandP-Branes
12.3Compactification
12.4Example:D=6
12.4.1D=6,N=(2,2)Theory
12.4.2D=6,N=(1,1)Theories
12.4.3M-TheoryinD=7
12.5Example:D=4,N=2andD=6,N=1
12.6SymmetryEnhancementandTensionlessStrings
12.7F-Theory
12.8Example:D=4
12.9Summary
References

13Solitons,D-Branes,andBlackHoles
13.1Solitons
13.2SupermembraneActions
13.3Five-BraheAction
13.4D-Branes
13.5D-BraneActions
13.6M(atrix)ModelsandMembranes
13.7BlackHoles
13.8Summary
13.9Conclusion
References
Appendix
A.1ABriefIntroductiontoGroupTheory
A.2ABriefIntroductiontoGeneralRelativity
A.3ABriefIntroductiontotheTheoryofForms
A.4ABriefIntroductiontoSupersymmetry
A.5ABriefIntroductiontoSupergravity
A.6Notation
References
Index
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