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GRAVITY OF ACCELERATIONS ON QUANTUM SCALES AND ITS CONSEQUENCES

机译:量子尺度上的加引力及其后果

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Gravity stands apart from other fundamental interactions in that it is locally equivalent to an accelerated frame and can be transformed away. Again it is indistinguishable from the geometry of space-time (which is an arena for all other basic interactions), its strength being linked with the curvature. This is a major reason why it has so far not been amenable to quantisation like other interactions. It is also evident that new ideas are required to resolve several conundrums in areas like cosmology, black hole physics, and particles at high energies. That gravity can have strong coupling at microscales has also been suggested in several contexts earlier. Here we develop some of these ideas, especially in connection with the high accelerations experienced by particles at microscales, which would be interpreted as strong local gravitational fields. The consequences are developed for various situations and possible experimental manifestations are discussed.
机译:重力与其他基本相互作用不同,它在局部上等同于加速的框架,可以被转化。同样,它与时空的几何形状(这是所有其他基本相互作用的竞技场)没有区别的,它的强度与曲率有关。这是为什么到目前为止它不像其他交互作用那样适合量化的主要原因。同样显而易见的是,需要新的思想来解决在宇宙学,黑洞物理学和高能粒子等领域中的一些难题。早先在几种情况下还提出重力可以在微尺度上具有强耦合。在这里,我们提出了一些这样的想法,特别是与微观尺度上的粒子所经历的高加速度有关,这可以解释为强大的局部引力场。结果针对各种情况而发展,并讨论了可能的实验表现形式。

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