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Energetic Causal Sets

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arxiv 1308.2206 v2 pith:DLJE6NS3 submitted 2013-08-09 gr-qc quant-ph

classification gr-qcquant-ph
keywords causalsetsenergeticprocessesquantumamplitudesfundamentalfundamentally
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abstract

We propose an approach to quantum theory based on the energetic causal sets, introduced in Cort\^{e}s and Smolin (2013). Fundamental processes are causal sets whose events carry momentum and energy, which are transmitted along causal links and conserved at each event. Energetic causal set models differ from other spacetime-free causal set approaches, e.g. Ref. [2] proposed causal sets based on quantum information processing systems, and Ref. [3] proposed causal sets constructed out of standard model particles. Fundamentally there are amplitudes for causal processes in energetic causal sets, but no space-time. An embedding of the causal processes in an emergent space-time arises only at the semiclassical level. Hence, fundamentally there are no commutation relations, no uncertainty principle and, indeed, no $\hbar$. All that remains of quantum theory is the relationship between the absolute value squared of complex amplitudes and probabilities. Consequently, we find that neither locality, nor non locality, are primary concepts, only causality exists at the fundamental level.

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Cited by 2 Pith papers

Reviewed papers in the Pith corpus that reference this work. Sorted by Pith novelty score. Full citation record

  1. Quantum Spacetime Leaps: Higher Dimensional Energetic Causal Sets

    gr-qc 2025-02 conditional novelty 5.0 of 10

    A 2+1d simulation of Energetic Causal Sets exhibits a disorder-to-crystal phase transition, mirroring the 1+1d emergence of quasi-particles and showing limit-cycle behavior.

  2. Multidimensional arrow of time

    gr-qc 2026-01 reject novelty 4.0 of 10

    The direction of time is claimed to be fixed by the exponentially growing entropy of expanding extra dimensions, which dominates every other entropy source in the universe.

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