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Can a Nonsyrnmetric Metric mimic NCQFT in e~+e~- → γγ?

机译:在E〜+ e〜→γγ中可以是一个非金属度量模拟NCQTE?

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In the nonsyrnmetric gravitational theory (NGT) the space-time metric g_(μv) departs from the flat-space Minkowski form η_(μv) such that it is no longer symmetric, i.e. g_(μv)≠ g_(vμ). We find that in the most conservative such scenario coupled to quantum field theory, which we call Minimally Nonsymmetric Quantum Field Theory (MNQFT), there are experimentally measurable consequences similar to those from noncommutative quantum field theory (NCQFT). This can be expected from the Seiberg-Witten map which has recently been interpreted as equating gauge theories on noncommutative spacetimes with those in a field dependent gravitational background. In particular, in scattering processes such as the pair annihilation e~+e~-→γγ, both theories make the same striking prediction that the azimuthal cross section oscillates in Φ. However the predicted number of oscillations differs in the two theories: MNQFT predicts between one and four, whereas NCQFT has no such restriction.
机译:在非符号重力理论(NGT)中,空时度量G_(μV)从平坦空间Minkowskiη_(μV)离开,使得它不再对称,即G_(μV)≠G_(vμ)。 我们发现,在最保守的这种情况下,耦合到量子场理论,我们呼叫微小的不对称量子场理论(MNQFT),存在与非容态量子场理论(NCQT)类似的实验可测量的后果。 这可以从塞贝因的行业地图预期,最近被解释为等同于非容性时刻的等同性尺寸理论与现场依赖引力背景中的那些。 特别地,在诸如对湮灭E〜+ E〜→γγ的散射过程中,两个理论都制造了相同的引人注目的预测,即方位角截面振荡在φ中。 然而,预测的振荡数量在两个理论中不同:MNQFT预测一到四个,而NCQFT没有这样的限制。

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