Title of article
On the four-dimensional conformal anomaly, fractal Cantorian space-time and the fine structure constant
Author/Authors
Carlos Castro، نويسنده ,
Issue Information
دوهفته نامه با شماره پیاپی سال 2002
Pages
5
From page
203
To page
207
Abstract
Antoniadis, Mazur and Mottola (AMM) two years ago computed the intrinsic Hausdorff dimension of space-time at the infrared fixed point of the quantum conformal factor in four-dimensional gravity. The fractal dimension was determined by the coefficient of the Gauss–Bonnet topological term associated with the conformal gravitational anomaly and was found to be greater than 4. It is explicitly shown how one can relate the value of the Hausdorff dimension computed by AMM to the universal dimensional fluctuation of space-time given by φ3/2, where φ is the golden mean 0.618… Based on the infrared scaling limit of the theory and using recent renormalization group arguments by El Naschie, we conjecture that the unknown coefficient Q2, associated with the four-dimensional gravitational conformal anomaly, could be precisely equal to the inverse fine structure constant values ranging between 137.036 and 137.641. Our results generate decimal digits up to any arbitrary number and are very close to El Naschieʹs exact value .
Journal title
Chaos, Solitons and Fractals
Serial Year
2002
Journal title
Chaos, Solitons and Fractals
Record number
899798
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