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Quantum gravity and cosmological observations

机译:量子重力和宇宙学观察

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Quantum gravity places entirely new challenges on the formulation of a consistent theory as well as on an extraction of potentially observable effects. Quantum corrections due to the gravitational field are commonly expected to be tiny because of the smallness of the Planck length. However, a consistent formulation now shows that key features of quantum gravity imply magnification effects on correction terms which are especially important in cosmology with its long stretches of evolution. After a review of the salient features of recent canonical quantizations of gravity and their implications for the quantum structure of space-time a new example for potentially observable effects is given.
机译:量子重力在制定一致理论方面完全新的挑战以及潜在可观察效果的提取。由于引力场引起的量子校正通常预期由于普朗克长度的少量而微小。然而,一致的制剂现在表明量子重力的关键特征意味着对校正术语的倍率效应,其在宇宙中尤为重要,其长度的进化。在审查最近的传统量化的重力的突出特征之后,给出了对时空的量子时间的量子结构的影响,给出了潜在可观察效果的新示例。

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