
This paper investigates how stable, particle-like fermionic excitations can emerge from a minimal discrete Planck network within the Causal Memory Gravity framework. Using Lindblad-based numerical simulations, it demonstrates controlled decoherence and robust quasiparticle behavior, providing a proof-of-concept for an emergent matter sector.
Quantum Gravity, Lindblad Dynamics, Emergent Matter, Foundations of Physics, Causal Memory Gravity, Discrete Planck Network
Quantum Gravity, Lindblad Dynamics, Emergent Matter, Foundations of Physics, Causal Memory Gravity, Discrete Planck Network
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