Anti-de Sitter momentum space in 3D and 4D quantum gravity

Giovanni Amelino-Camelia, I. Lobo, Giovanni Palmisano
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Abstract

There has been strong interest in the possibility that in the quantum-gravity realm momentum space might be curved, mainly focusing, especially for what concerns phenomenological implications, on the case of a de Sitter momentum space. We here take as starting point the known fact that quantum gravity coupled to matter in $2+1$ spacetime dimensions gives rise to an effective picture characterized by a momentum space with anti-de Sitter geometry, and we point out some key properties of $2+1$-dimensional anti-de Sitter momentum space. We observe that it is impossible to implement all of these properties in theories with a $3+1$-dimensional anti-de Sitter momentum space, and we then investigate, with the aim of providing guidance to the relevant phenomenology focusing on possible modified laws of conservation of momenta, the implications of giving up, in the $3+1$-dimensional case, some of the properties of the $2+1$-dimensional case.
三维和四维量子引力中的反德西特动量空间
在量子引力领域,动量空间可能是弯曲的,这引起了人们的强烈兴趣,尤其是在现象学影响方面,人们主要关注德西特动量空间的情况。在此,我们以一个已知事实为出发点,即在 2+1$ 时空维度中与物质耦合的量子引力会产生一幅有效的图景,其特征是具有反德西特几何的动量空间,我们还指出了 2+1$ 维反德西特动量空间的一些关键特性。我们注意到,在具有 3+1$ 维反德西特动量空间的理论中不可能实现所有这些性质,然后我们研究了在 3+1$ 维情况下放弃 2+1$ 维情况下的某些性质的影响,目的是为相关现象学提供指导,重点是可能修改的力矩守恒定律。
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