Introduction to the Quantum Theory of Elementary Cycles: The Emergence of Space, Time and Quantum
Donatello Dolce

TL;DR
Elementary Cycles Theory proposes that particles are intrinsic clocks with persistent space-time periodicity, unifying quantum and relativistic physics through cyclic space-time coordinates and modulated elementary cycles.
Contribution
The paper introduces a novel framework where quantum and relativistic physics are unified via intrinsic cyclicity of space-time, eliminating the need for explicit quantization.
Findings
Particles are characterized by intrinsic space-time periodicity.
Unification of quantum and relativistic mechanics achieved through cyclic space-time.
Gauge interactions emerge as modulations of elementary space-time clocks.
Abstract
Elementary Cycles Theory is a self-consistent, unified formulation of quantum and relativistic physics. Here we introduce its basic quantum aspects. On one hand, Newton's law of inertia states that every isolated particle has persistent motion, i.e. constant energy and momentum. On the other hand, the wave-particle duality associates a space-time recurrence to the elementary particle energy-momentum. Paraphrasing these two fundamental principles, Elementary Cycles Theory postulates that every isolated elementary constituent of nature (every elementary particle) must be characterized by persistent intrinsic space-time periodicity. Elementary particles are the elementary reference clocks of Nature. The space-time periodicity is determined by the kinematical state (energy and momentum), so that interactions imply modulations, and every system is decomposable in terms of modulated…
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Taxonomy
TopicsRelativity and Gravitational Theory · Quantum Mechanics and Applications · Noncommutative and Quantum Gravity Theories
