Instancology: A Formal Framework for Quantum-Cosmo
Instancology: A Formal Framework for Quantum-Cosmological Resolution
1. Foundational Axioms: The Instance-Field
Let the instance-field ℐ be a dynamical, layered network structured by the issuance of discrete units called instances. Each instance iₖ ∈ ℐ is defined as a tuple:
iₖ = (eₖ, τₖ, ℛₖ)
Where:
- eₖ: An eventual emergence (e.g., a quantum transition, a spacetime articulation).
- τₖ: A temporal span (the persistence duration of the instance).
- ℛₖ: A relation set (directed and weighted links to other instances, possibly defined via sheaf cohomology).
Reality stabilizes when dℛₖ/dτₖ ≤ Θ_decay.
2. Quantum Mechanics: Collapse via Instance Saturation
Modified Born Rule:
P(j) = |⟨ψⱼ | ψ⟩|² / Σₖ S(iₖ, iⱼ), where S(iₖ, iⱼ) is instance-overlap.
Prediction: Decoherence deviates from unitary predictions when relational entanglement is low.
Test: Weak measurement setups detect non-Markovian decoherence spikes near Θ_decay.
3. Spacetime as a Relational Instance-Network
The spacetime metric g_μν(x) emerges from instance-density ρ(ℐ):
g_μν(x) ∝ log(∫_{x-Δx}^{x+Δx} ρ(ℐ) dτ)
When ρ(ℐ) → ∞, instance-field fractures (no point-singularity).
Test: Gravitational wave detectors should observe non-Poissonian holographic noise.
4. Consciousness as Instance-Binding Dynamics
C = {iₖ | ℛₖ ∩ ℛ_self ≠ ∅}, i.e., instances resonating with self-binding structure.
Implication for AI: Consciousness requires relational instancing, not mere computation.
5. Experimental Forecasts and Deviations
Prediction | Experiment | Expected Signature
Instance-collapse decoherence | Weak measurement + tomography | Non-Markovian spikes at Θ_decay
Spacetime granularity | Holometer/Fermi-GBM reanalysis | Log-fractal holographic noise
Entanglement as relational loss | Bell tests w/ instance suppression | Visibility decay ∝ S(iₖ, iⱼ)
6. Philosophical Leap, Scientific Anchor
- Not metaphysics alone: Falsifiable by relational-temporal perturbation.
- Unified substrate: QM, GR, and consciousness within the instance-field.
- Mathematical novelty: Sheaves, stochastic decay, topological fragmentation.
7. Concluding Frame: Instancology as Post-Theory Epistemics
Instancology identifies the conditions under which a universe appears as an instance.
In the deepest layer, not things, but issuance—not causes, but coherence—not emergence, but instance.
Future science must trace relational issuance across scales, minds, and machines.