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Brane Effective Actions Kappa-Symmetry and Applications

机译:Brane有效动作κ对称性及其应用

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摘要

This is a review on brane effective actions, their symmetries and some of their applications. Its first part covers the Green-Schwarz formulation of single M- and D-brane effective actions focusing on kinematical aspects: the identification of their degrees of freedom, the importance of world volume diffeomorphisms and kappa symmetry to achieve manifest spacetime covariance and supersymmetry, and the explicit construction of such actions in arbitrary on-shell supergravity backgrounds.Its second part deals with applications. First, the use of kappa symmetry to determine supersymmetric world volume solitons. This includes their explicit construction in flat and curved backgrounds, their interpretation as Bogomol’nyi-Prasad-Sommerfield (BPS) states carrying (topological) charges in the supersymmetry algebra and the connection between supersymmetry and Hamiltonian BPS bounds. When available, I emphasise the use of these solitons as constituents in microscopic models of black holes. Second, the use of probe approximations to infer about the non-trivial dynamics of strongly-coupled gauge theories using the anti de Sitter/conformal field theory (AdS/CFT) correspondence. This includes expectation values of Wilson loop operators, spectrum information and the general use of D-brane probes to approximate the dynamics of systems with small number of degrees of freedom interacting with larger systems allowing a dual gravitational description.Its final part briefly discusses effective actions for N D-branes and M2-branes. This includes both Super-Yang-Mills theories, their higher-order corrections and partial results in covariantising these couplings to curved backgrounds, and the more recent supersymmetric Chern-Simons matter theories describing M2-branes using field theory, brane constructions and 3-algebra considerations.
机译:这是对麸皮有效行动,其对称性及其某些应用的综述。第一部分涵盖了针对运动学方面的M-和D-布雷恩单一有效动作的Green-Schwarz公式化:确定其自由度,确定世界体积微分和Kappa对称性对实现时空协方差和超对称性的重要性,以及此类行为在任意壳上超重力背景下的显式构造。其第二部分处理应用程序。首先,使用kappa对称性确定超对称世界体积孤子。这包括它们在平坦和弯曲背景中的显式构造,它们的解释为Bogomol’nyi-Prasad-Sommerfield(BPS)状态在超对称代数中携带(拓扑)电荷以及超对称性和汉密尔顿BPS界线之间的联系。如果可用,我强调将这些孤子用作黑洞微观模型的组成部分。第二,使用反近似Sitter /共形场理论(AdS / CFT)对应关系,使用探针逼近来推断强耦合规范理论的非平凡动力学。这包括Wilson环算子的期望值,频谱信息以及D形探头的一般用法,以近似自由度较小的系统与较大的系统相互作用的系统的动力学,从而实现双重引力描述。最后一部分简要讨论了有效的措施用于N个D型和M2型。其中包括超级杨米尔斯理论,它们的高阶校正和将这些耦合与弯曲背景协变的部分结果,以及最新的超对称陈恩-西蒙斯物质理论,这些理论使用场论,brane构造和3代数描述了M2分子。注意事项。

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