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- W2751040854 abstract "Investigations on possible violation of Lorentz invariance have been widely pursued in the last decades, both from theoretical and experimental sides. A comprehensive framework to formulate the problem is the standard model extension (SME) proposed by A.Kostelecky, where violation of Lorentz invariance is encoded into specific coefficients. Here we present a procedure to link the deformation parameter $beta$ of the generalized uncertainty principle (GUP) to the SME coefficients of the gravity sector. The idea is to compute the Hawking temperature of a black hole in two different ways. The first way involves the deformation parameter $beta$, and therefore we get a deformed Hawking temperature containing the parameter $beta$. The second way involves a deformed Schwarzschild metric containing the Lorentz violating terms $bar{s}^{munu}$ of the gravity sector of the SME. The comparison between the two different techniques yields a relation between $beta$ and $bar{s}^{munu}$. In this way bounds on $beta$ transferred from $bar{s}^{munu}$ are improved by many orders of magnitude when compared with those derived in other gravitational frameworks. Also the opposite possibility of bounds transferred from $beta$ to $bar{s}^{munu}$ is briefly discussed." @default.
- W2751040854 created "2017-09-15" @default.
- W2751040854 creator A5001832906 @default.
- W2751040854 creator A5050600153 @default.
- W2751040854 date "2018-04-03" @default.
- W2751040854 modified "2023-10-18" @default.
- W2751040854 title "Lorentz violation and generalized uncertainty principle" @default.
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- W2751040854 doi "https://doi.org/10.1103/physrevd.97.075003" @default.
- W2751040854 hasPublicationYear "2018" @default.
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