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Crystal_Mycelial_Engine

Crystal–Mycelial Engine

  • module.json — Agentic module schema role assignments

RTT / CMH Substrate Engine#

Prepared by Nawder Loswin


Module Identity#

Module: Crystal_Mycelial_Engine
Category: RTT–CMH Engine
Version: 1.0.0
Role: Substrate engine defining biological → hybrid → mineral transitions within CMH.


Overview#

The Crystal–Mycelial Engine (CME) describes a hybrid substrate system in which biological mycelial geometry is infiltrated, aligned, and stabilized into mineral lattice logic. CME provides the operator grammar, substrate semantics, and regime envelopes required for CMH substrate transitions.

CME integrates three substrate phases:

  1. Biological substrate — hyphal channels, pulse pathways, branch scars
  2. Hybrid substrate — mineral infiltration, resonance alignment, memory transfer
  3. Mineral substrate — lattice propagation, domain memory, impurity bands

Substrate Structure#

Biological Layer#

  • Hyphal tip propagation
  • Voltage‑gated branching
  • Nutrient‑gradient routing
  • Pulse‑based logic signaling
  • Structural memory encoding

Hybrid Layer#

  • Channel infiltration
  • Memory transfer
  • Electrical resonance alignment
  • Dual‑substrate coherence

Mineral Layer#

  • Lattice propagation
  • Field‑aligned growth
  • Piezoelectric domain formation
  • Impurity‑encoded memory
  • Resonant logic stabilization

Operator Grammar#

Propagation (P)#

Controls geometry and front movement.
Examples: P.trace_extend, P.front_propagate, P.branch_decision

Energy (E)#

Controls pulses, resonance, and field alignment.
Examples: E.logic_pulse, E.resonance_field, E.resonance_sync

Gradient (G)#

Controls directional fields and envelopes.
Examples: G.nutrient_gradient, G.voltage_gradient, G.resonance_gradient

Memory (M)#

Encodes structural and domain memory.
Examples: M.route_memory, M.domain_memory, M.memory_transfer

Substrate (S)#

Controls hybridization and substrate transitions.
Examples: S.channel_fill, S.map_preserve, S.dual_substrate_alignment


MSRM Regime Integration#

Biological Growth Regime (BGR)#

  • Moisture: 0.55–0.65
  • EM field: 0.2–0.4 mT
  • Outputs: biological geometry map

Hybrid Resonance Regime (HRR)#

  • Ion saturation: 0.65–0.75
  • Coherence field: 0.8–1.4 kHz
  • Outputs: hybrid layer, resonance alignment

Mineral Lock‑In Regime (MLR)#

  • Supersaturation: ≥ 0.85
  • Temperature shift: −3 to −5 °C
  • Outputs: crystal domains, impurity band memory

File Layout#

Crystal_Mycelial_Engine/
├── module.json
├── README.md
├── operator_registry.md
├── regime_cycle.md
├── substrate_swap.md
├── structural_overview.png
└── calibration_as_structure.md

Audience#

  • RTT researchers
  • CMH substrate architects
  • hybrid chip designers
  • unconventional computing specialists
  • students and AI agents using RTT operator grammar

License#

Open educational use permitted.