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首页> 外文期刊>International journal of modern physics, D. Gravitation, astrophysics, cosmology >Entanglement entropy, scale-dependent dimensions and the origin of gravity
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Entanglement entropy, scale-dependent dimensions and the origin of gravity

机译:纠缠熵,鳞依赖性尺寸和重力起源

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摘要

We argue that the requirement of a finite entanglement entropy of quantum degrees of freedom across a boundary surface is closely related to the phenomenon of running spectral dimension, universal in approaches to quantum gravity. If quantum geometry hinders diffusion, for instance, when its structure at some given scale is discrete or too rough, then the spectral dimension of spacetime vanishes at that scale and the entropy density blows up. A finite entanglement entropy is a key ingredient in deriving Einstein gravity in a semi-classical regime of a quantum-gravitational theory and, thus, our arguments strengthen the role of running dimensionality as an imprint of quantum geometry with potentially observable consequences.
机译:我们认为,在边界表面上的量子自由度的有限纠缠熵的要求与运行光谱尺寸的现象,通用的量子重力的方法密切相关。 例如,如果量子几何形状阻碍扩散,例如,当其某些给定刻度的结构是离散的或太粗糙的时,那么时刻的光谱尺寸消失,熵密度爆发。 有限的缠结熵是在量子 - 重力理论的半古典政权中导出爱因斯坦重力的关键成分,因此我们的论点加强了运行维度作为量子几何形状的印记具有潜在可观察的后果的作用。

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