Authors: Sylwester Kornowski
There can be many scenarios to explain the deviation of the measured cross sections by HERA from the predicted cross sections within the Standard Model (SM) for the deep inelastic electron-proton scattering especially at higher energy transfer. Here we present new-physics scenario that follows from the atom-like structure of baryons, structure of bare electrons and electroweak theory described within the Scale-Symmetric Theory (SST). The ratio of cross sections for momentum transfer 100 GeV obtained within SST and SM is 0.977 - this result obtained within SST is consistent with the HERA data (the SM result is inconsistent with the HERA data). For momentum transfer about 265 GeV such ratio is 0.843 +- 0.002 - this result obtained within SST is inconsistent with theoretical result (about 0.9) that follows from the beyond the Standard Model (BSM) contributions to electron-quark scattering with the non-zero effective quark radius. It means that future more precise measurements for momentum transfer about 265 GeV should determine which theory (SST or BSM-theory) is correct. Applying the Kasner solution to the Einstein’s field equations, we answered as well the question why many results obtained within the SST and Quantum Chromodynamics (they are the very different theories) are the same and why many SST results are the best ones.
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[v1] 2016-04-15 10:48:14
[v2] 2016-04-27 09:44:21
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