Coarse-graining deterministic event chains yields Nambu-like QFT with running ħ and IR unitarity, plus an emergent metric selected by Lovelock to Einstein gravity.
An alternative formalism for modeling spin
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abstract
We present an alternative formalism for modeling spin. The ontological elements of this formalism are base-2 sequences of length $n$. The machinery necessary to model physics is then developed by considering correlations between base-2 sequences. Upon choosing a reference base-2 sequence, a relational system of numbers can be defined, which we interpret as quantum numbers. Based on the properties of these relational quantum numbers, the selection rules governing interacting spin systems are derived from first principles. A tool for calculating the associated probabilities, which are the squared Clebsch-Gordan coefficients in quantum mechanics, is also presented. The resulting model offers a vivid information theoretic picture of spin and interacting spin systems. Importantly, this model is developed without making any assumptions about the nature of space-time, which presents an interesting opportunity to study emergent space-time models.
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hep-th 1years
2026 1verdicts
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Minimal Proper Time and Deterministic Microstates: Emergent Quantum Fields and Relativistic Spacetime
Coarse-graining deterministic event chains yields Nambu-like QFT with running ħ and IR unitarity, plus an emergent metric selected by Lovelock to Einstein gravity.