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Chaotic Fractals at the Root of Relativistic Quantum Physics and Cosmology 被引量:1

Chaotic Fractals at the Root of Relativistic Quantum Physics and Cosmology
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摘要 At its most basic level physics starts with space-time topology and geometry. On the other hand topology’s and geometry’s simplest and most basic elements are random Cantor sets. It follows then that nonlinear dynamics i.e. deterministic chaos and fractal geometry is the best mathematical theory to apply to the problems of high energy particle physics and cosmology. In the present work we give a short survey of some recent achievements of applying nonlinear dynamics to notoriously difficult subjects such as quantum entanglement as well as the origin and true nature of dark energy, negative absolute temperature and the fractal meaning of the constancy of the speed of light. At its most basic level physics starts with space-time topology and geometry. On the other hand topology’s and geometry’s simplest and most basic elements are random Cantor sets. It follows then that nonlinear dynamics i.e. deterministic chaos and fractal geometry is the best mathematical theory to apply to the problems of high energy particle physics and cosmology. In the present work we give a short survey of some recent achievements of applying nonlinear dynamics to notoriously difficult subjects such as quantum entanglement as well as the origin and true nature of dark energy, negative absolute temperature and the fractal meaning of the constancy of the speed of light.
出处 《International Journal of Modern Nonlinear Theory and Application》 2013年第1期78-88,共11页 现代非线性理论与应用(英文)
关键词 HAUSDORFF Dimension Cantorian SPACE-TIME Golden Mean Quantum Entanglement CHAOTIC Fractals Fractal Interpretation of Velocity of Light Negative KELVIN Temperature Hausdorff Dimension Cantorian Space-Time Golden Mean Quantum Entanglement Chaotic Fractals Fractal Interpretation of Velocity of Light Negative Kelvin Temperature
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