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首页> 外文期刊>The journal of high energy physics >Covariant cosmological quantum space-time, higher-spin and gravity in the IKKT matrix model
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Covariant cosmological quantum space-time, higher-spin and gravity in the IKKT matrix model

机译:IKKT矩阵模型中的协变宇宙学时空,高旋转和重力

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摘要

A bstract We discuss a (3+1)-dimensional covariant quantum space-time describing a FLRW cosmology with Big Bounce, obtained by a projection of the fuzzy hyperboloid H ~( n )_(4) . This provides a background solution of the IKKT matrix model with mass term. We characterize the bosonic fluctuation spectrum, which consists of a tower of higher-spin modes, truncated at n . The modes are organized in terms of an underlying SO(4, 2) structure group, which is broken to the SO(3, 1) isometry of the background. The resulting higher-spin gauge theory includes all degrees of freedom required for gravity, and should be well suited for quantization. All modes propagate with the same speed of light, even though local boost invariance is not manifest. The propagating metric perturbation modes comprise those of a massless graviton, as well as a scalar mode. Gauge invariance allows to obtain the analog of the linearized Einstein-Hilbert action, which is expected to be induced upon quantization.
机译:Bstract我们讨论了描述了使用模糊双曲线H〜(n)_(4)的投影获得的FLRW宇宙学的一个(3 + 1)的COVARIAL量子空间。 这提供了具有质量术语的IKKT矩阵模型的背景解决方案。 我们表征了振动波动谱,由高自旋模式塔组成,截断为n。 根据潜在的SO(4,2)结构组的方式组织,该模式被破坏到背景(3,1)的背景。 由此产生的更高旋转仪理论包括重力所需的所有自由度,并且应该非常适合量化。 所有模式都以相同的光速传播,即使本地升压不变性并不明显。 传播的公制扰动模式包括卡扣的那些,以及标量模式。 仪表不变性允许获得线性化爱因斯坦-Hilbert动作的模拟,这预计将在量化时诱导。

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