This research aims to apply quantum theory to the study of fuzzy phenomena. The fuzzy event quantum probability theory is proposed, using the concept and approach of fuzzy mathematics. It takes the form of fuzzy event route integral, membership degree amplitude, fuzzy field function, Green function, physical quantity, and fuzzy diagram. This theory alters quantum mechanics, which makes the latter a unique case of the former. This theory violates unitarity, gauge invariance, probability conservation, and information conservation under specific circumstances, making these concepts approximations. This new theory is the proper theory for describing microscopic high-speed phenomena, whereas quantum mechanics is only a proper theory for describing microscopic low-speed phenomena. It does not require renormalization and can naturally produce meaningful results that are consistent with the experiments. This theory can serve as the theoretical foundation needed for gravity quantization because it is not divergent under the circumstances of no renormalization and an endless number of offsetting terms.
Author(s) Details:
Wenbing Qiu,
Department of Physics, Faculty of Science, Shihezi University, Shihezi, China.
Please see the link here: https://stm.bookpi.org/NFPSR-V1/article/view/8127
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