Abstract

Realizing the physical reality of ‘tHooft’s self similar and dimensionaly regularized fractal-like spacetime as well as being inspired by a note worthy anecdote involving the great mathematician of Alexandria, Pythagoras and the larger than life man of theoretical physics Einstein, we utilize some deep mathematical connections between equivalence classes of equivalence relations and E-infinity theory quotient space. We started from the basic principles of self similarity which came to prominence in science with the advent of the modern theory of nonlinear dynamical systems, deterministic chaos and fractals. This fundamental logico-mathematical thread related to partially ordered sets is then applied to show how the classical Newton’s kinetic energy E = 1/2mv2 leads to Einstein’s celebrated maximal energy equation E = mc2 and how in turn this can be dissected into the ordinary energy density E(O) = mc2/22 and the dark energy density E(D) = mc2(21/22) of the cosmos where m is the mass; v is the velocity and c is the speed of light. The important role of the exceptional Lie symmetry groups and ‘tHooft-Veltman-Wilson dimensional regularization in fractal spacetime played in the above is also highlighted. The author hopes that the unusual character of the analysis and presentation of the present work may be taken in a positive vein as seriously attempting to propose a different and new way of doing theoretical physics by treating number theory, set theory, group theory, experimental physics as well as conventional theoretical physics on the same footing and letting all these diverse tools lead us to the answer of fundamental questions without fear of being labelled in one way or another.

Highlights

  • Equivalence Relation, Scaling, Intermediate Asymptotic, Golden Mean Scaling, Einstein Self Similarity, Fractal Scaling, E-Infinity, Special Relativity, Random Cantor Sets, ‘tHooft Regularization, Fractal Quantum Field, Quantum Gravity, Exceptional Lie Symmetry Groups

  • The main thrust of the paper is to demonstrate in a concrete way a general methodology or maybe a new theory in theoretical physics which we could have labelled “Simplixity method of quantum complexity via topological E-infinity theory”

  • Remembering that energy, entropy and information [46] [49]-[57] are without a doubt some of the most fundamental and interrelated notions in physics, it is natural that we utilize these afore mentioned self similarity to shed light on the major problem of the measurable ordinary energy density [58]-[63] and the dark energy density [60]-[63] of the cosmos which we cannot measure at present in any direct way [57]-[63]

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Summary

The Simplexity of Quantum Complexity—An Informal Introduction

It is well known that Cantorian fractals probabilistic equivalence relation (see Appendixs 1-4) can be based on similarities and we will show here how this can lead to surprizing connections to physics via Penrose fractal tiling based self similar E-infinity quotient spacetime manifold [1]-[20]. It should be expected as a matter of logical consistency that the equation derived from and in this spacetime will be self similar or at a minimum self affine [23]-[45] This is the main theme of the present paper [1]-[106] and at the end of a rather detailed discussion and analysis we will rediscover a fundamental fact, namely that most of the experimentally verified theories were always self. In this respect we stress that reading Refs. 121 to 135 is strongly recommended to gain a deep insight into the subject

Fuzziness as a Method
A Thin and a Fat Cantor Universe Made of One Cantor Set and Its Embedding
The Double Nature of a Cantor Set in Mathematics and Physics
No Energy without a Volume
Self Similarity in Newton Gravity and Quantum Gravity
12. Non-Standard Riemannian Stein Spaces for Ordinary and Dark Energy Density
Findings
13. Conclusion without a Final Word
Full Text
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