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Emergent geometry and gravity from matrix models: An introduction

机译:矩阵模型中出现的几何和重力:简介

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摘要

An introductory review to emergent noncommutative gravity within Yang-Mills matrix models is presented. Spacetime is described as a noncommutative brane solution of the matrix model, i.e. as a submanifold of RD. Fields and matter on the brane arise as fluctuations of the bosonic resp. fermionic matrices around such a background, and couple to an effective metric interpreted in terms of gravity. Suitable tools are provided for the description of the effective geometry in the semi-classical limit. The relation to non-commutative gauge theory and the role of UV/IR mixing are explained. Several types of geometries are identified, in particular 'harmonic' and 'Einstein' types of solutions. The physics of the harmonic branch is discussed in some detail, emphasizing the non-standard role of vacuum energy. This may provide a new approach to some of the big puzzles in this context. The IKKT model with D = 10 and close relatives are singled out as promising candidates for quantum theory of fundamental interactions including gravity.
机译:介绍了对Yang-Mills矩阵模型中出现的非交换重力的介绍。时空被描述为矩阵模型的非可交换布氏解,即RD的子流形。当硼的响应波动时,会在麸上产生磁场和物质。铁离子基质围绕这样的背景,并耦合到以重力为依据的有效度量。提供了用于描述半经典范围内的有效几何形状的合适工具。解释了与非交换规范理论的关系以及UV / IR混合的作用。确定了几种类型的几何,特别是“谐波”和“爱因斯坦”类型的解决方案。对谐波支路的物理过程进行了详细讨论,强调了真空能量的非标准作用。这可能为在这种情况下的一些大难题提供了一种新方法。 D = 10和近亲的IKKT模型被选为包括相互作用在内的基本相互作用的量子理论的有希望的候选者。

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