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New Insight into Electronic Neutrino Creation under X-Ray Absorption by Water Tetrahedron Intercalated with Hydronium Ion (H3O^+)
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作者 alexander v. udal'tsov 《Journal of Energy and Power Engineering》 2017年第11期693-705,共13页
In contrast to so-called Auger process resulting in electron ejection from oxygen atom of water molecule under X-ray absorption, the coupling of the opposite charges in liquid water leads to polaronic exciton formatio... In contrast to so-called Auger process resulting in electron ejection from oxygen atom of water molecule under X-ray absorption, the coupling of the opposite charges in liquid water leads to polaronic exciton formation. As a result, polaronic exciton stabilized by the structure of water tetrahedron can serve as the reaction center for deuterium creation under X-ray absorption. In this case, X-ray emission spectra of H:O and D20 give a clue for the deciphering of the events followed by X-ray photon absorption. It appears to be that spin-orbit interaction under proton sharing and the interaction between LO (longitudinal optical) phonon and bipolaron in the excited state are responsible for the energy levels determining neutrino energy. The energy gap between the levels with pATe andplle spin configurations of proton and electron is found to be 325.51 cm^-1 in the case of the spin-orbit interaction in polaronic exciton, while 1,556.054 cm^-1 under LO phonon interaction with the proton of the bipolaron producing the change of the nucleus spin direction to the opposite. 展开更多
关键词 Water X-ray emission polaronic exciton Compton wavelength neutrino.
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