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Effects of generalized uncertainty principle on quantum electrodynamics

2024
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Advisor: Prof. Dr. Yusuf Sucu

Abstract (EN)

The size of the most fundamental structure that forms the nature, or the minimum length scale, is an attempt to unify gravity and quantum theory. Because, it can be thought that this hypothetical most fundamental structure should be the nucleus of the structure that creates space-time or gravity within the scope of Einstein theory, rather than a matter particle. In this context, models that include the minimum length scale are referred to the quantum theory of gravity or quantum gravity in the literature. In this study, the effect of the generalized uncertainty principle on the quantum electrodynamics of high spin particles or zitterbewegung particles obtained from the Barut model under various interactions was investigated. In particular, how spin 3/2 and spin 2 particles become quantized as a result of their interaction with Landau and Nutku oscillators was discussed in terms of energy levels. In addition, modified Hawking temperatures have been generalized over the space-time backgrounds of rotating black holes, which can be reduced to 2+1 dimensions.

Author

Dr. Cavit Tekinçay

How to Cite

Cavit Tekinçay (Doctorate thesis). Effects of generalized uncertainty principle on quantum electrodynamics, 2024, Akdeniz University.

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