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NEW APPROACH TO CALCULATING THE SPECTRUM OF A QUANTUM SPACE-TIME

机译:计算量子空间频谱的新方法

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We study the dynamics of a massive pointlike particle coupled to gravity in four space-time dimensions. It has the same degrees of freedom as an ordinary particle: its coordinates with respect to a chosen origin (observer) and the canonically conjugate momenta. The effect of gravity is that such a particle is a black hole: its momentum becomes spacelike at a distances to the origin less than the Schwarzschild radius. This happens because the phase space of the particle has a nontrivial structure: the momentum space has curvature, and this curvature depends on the position in the coordinate space. The momentum space curvature in turn leads to the coordinate operator in quantum theory having a nontrivial spectrum. This spectrum is independent of the particle mass and determines the accessible points of space-time.
机译:我们研究了四个空间时间尺寸的燃料粒子耦合到重力的巨型粒子的动态。 它具有与普通颗粒相同的自由度:其坐标相对于所选的起源(观察者)和Cononally缀合的矩阵。 重力的影响是这种颗粒是黑洞:其动量在距离小于Schwarzschild半径的距离时变得痉挛。 这发生了因为颗粒的相位空间具有非活动结构:动量空间具有曲率,并且该曲率取决于坐标空间中的位置。 动量空间曲率又导致坐标算子在具有非活动频谱的量子理论中。 该光谱与粒子质量无关,并确定空间时间的可接近点。

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