Physics – High Energy Physics – High Energy Physics - Phenomenology
Scientific paper
2006-07-18
The Open Nucl. & Part. Phys. J. 2 (2009) 1-16
Physics
High Energy Physics
High Energy Physics - Phenomenology
26 pages, 3 figures; improved text; improved text;improved text; improved text to 31 pages, 4 figures
Scientific paper
10.2174/1874415X00902010001
We present a new approach to quantum general relativity based on the idea of Feynman to treat the graviton in Einstein's theory as a point particle field subject to quantum fluctuations just as any such field is in the well-known Standard Model of the electroweak and strong interactions. We show that by using resummation techniques based on the extension of the methods of Yennie, Frautschi and Suura to Feynman's formulation of Einstein's theory, we get calculable loop corrections that are even free of UV divergences. One further by-product of our analysis is that we can apply it to a large class of interacting field theories, both renormalizable and non-renormalizable, to render their UV divergences finite as well. We illustrate our results with applications of some phenomenological interest.
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