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Effective Spin Foam Models for Four-Dimensional Quantum Gravity

机译:用于四维量子重力的有效旋转泡沫模型

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A number of approaches to four-dimensional quantum gravity, such as loop quantum gravity and holography, situate areas as their fundamental variables. However, this choice of kinematics can easily lead to gravitational dynamics peaked on flat spacetimes. We show that this is due to how regions are glued in the gravitational path integral via a discrete spin foam model. We introduce a family of "effective" spin foam models that incorporate a quantum area spectrum, impose gluing constraints as strongly as possible, and leverage the discrete general relativity action to specify amplitudes. These effective spin foam models avoid flatness in a restricted regime of the parameter space.
机译:四维量子重力的多种方法,例如环量子重力和全息术,位于其基本变量。然而,这种运动学的选择可以很容易地导致在平坦的空间上达到顶部的重力动力学。我们表明这是由于区域如何通过离散的旋转泡沫模型在重力路径中粘在重力路径中。我们介绍了一种“有效”的旋转泡沫模型,其包含量子面积光谱,尽可能强烈地施加胶合约束,并利用离散的一般相对性作用来指定幅度。这些有效的旋转泡沫模型避免了参数空间的限制制度的平坦度。

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  • 来源
    《Physical review letters 》 |2020年第23期| 231301.1-231301.7| 共7页
  • 作者单位

    Perimeter Inst 31 Caroline St North Waterloo ON N2L 2Y5 Canada|Univ Waterloo Dept Phys & Astron 200 Univ Ave West Waterloo ON N2L 3G1 Canada;

    Perimeter Inst 31 Caroline St North Waterloo ON N2L 2Y5 Canada;

    Perimeter Inst 31 Caroline St North Waterloo ON N2L 2Y5 Canada|Bard Coll Phys Program 30 Campus Rd Annandale On Hudson NY 12504 USA;

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