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A Possible Microscopic Model for Gravitational Interaction

机译:引力相互作用的可能微观模型

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摘要

Following the discovery of Higgs Bosons ( H ) with a mass of around 126 GeV/c2 , it is hypothesized in this study that the gauge bosons, which are theoretically predicted to be gravitons in the mass interaction, may be produced by H , just as photons are produced in the case of electromagnetic ( EM ) interaction. Although the hypothesis is extremely difficult to prove experimentally in gravitation mechanism, from the parallel estimation of “quantum efficiencies” of virtual gravitons produced by virtual H annihilation in gravitation and virtual photons produced by virtual electron-positron annihilation in EM interaction, due to Heisenberg’s Uncertainty Principle ( HUP ), we evaluate that the relative ratio of photon to graviton intensities is in the order of 1036 which is in agreement with the relative strength between EM and gravitational interactions predicted in Quantum Field Theory ( QFT ).
机译:在发现质量约为126 GeV / c 2 的希格斯玻色子(H)之后,在这项研究中假设理论上认为玻色子是质量相互作用中的引力子,可能由H产生,就像在电磁(EM)相互作用的情况下产生光子一样。尽管该假设很难用引力机理进行实验证明,但是由于Heisenberg的不确定性,通过平行估计引力中虚拟H an灭产生的虚拟引子的“量子效率”和在EM相互作用中通过虚拟电子-正电子an灭产生的虚拟光子根据原理(HUP),我们估计光子与引力子强度的相对比约为10 36 ,这与EM和量子场论(QFT)中预测的引力相互作用之间的相对强度一致)。

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