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The cosmological implications of nonlocal gravity

机译:非局部引力的宇宙学意义

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The maximal failure of the quantum prediction of the 'cosmological constant' creates difficulties for a quantum theory of gravity, and for gravity as a local force, as does the failure of quantum gravity to preserve locality. The attractive nature of the gravitational force and the negative sign of its energy may be indications that it is intrinsically nonlocal and not limited to speed of light transfer. If we assume that gravity is nonlocal, a new set of equations will be needed to reconcile its effects with those observed under local measuring conditions. The cosmological redshift, microwave background radiation and arrow of time now become purely physical phenomena suggesting a totally different cosmology from the one currently generally accepted. The 'cosmological constant' is a necessary consequence and was predicted by this method long before it was experimentally discovered. The calculations also provide values for important astronomical constants in good agreement with measured results, and allow us to make predictions in particle physics such as the masses of the lightest neutrinos. Any cosmology that follows will be a result of fundamental physical laws and not a merely historical record of arbitrary events that just happened to take place in some inexplicable sequence.
机译:“宇宙常数”的量子预测的最大失败给量子引力理论和作为局部力的引力带来了困难,量子引力无法保持局部性也给困难。引力的吸引力及其能量的负号可能表明它本质上是非局部的,并且不限于光传输的速度。如果我们假设引力是非局部的,那么将需要一套新的方程来将其影响与在局部测量条件下观察到的影响相协调。宇宙学的红移,微波背景辐射和时间箭头现在变成纯粹的物理现象,表明与目前普遍接受的宇宙学完全不同的宇宙学。 “宇宙常数”是必要的结果,并且在通过实验发现之前很早就已通过这种方法进行了预测。这些计算还提供了与测量结果高度吻合的重要天文常数值,并使我们能够在粒子物理学中做出预测,例如最轻的中微子的质量。随之而来的任何宇宙学将是基本物理定律的结果,而不仅仅是偶然地以某种莫名其妙的顺序发生的任意事件的历史记录。

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