개요

Hybrid Resonance Regime (HRR)

Crystal–Mycelial Engine — RTT / CMH Substrate Phase#


1. Regime Identity#

Regime: Hybrid Resonance Regime (HRR)
Layer: Hybrid substrate
Role: Align biological and mineral substrates
Operators: S • HybridOps • E • G


2. Purpose#

The Hybrid Resonance Regime defines the transition layer where biological geometry and mineral precursor material become synchronized through resonance fields.
HRR is the phase in which CME performs:

  • mineral infiltration
  • resonance alignment
  • hybrid memory transfer
  • dual‑substrate coherence

This regime prepares the substrate for mineral lock‑in.


3. Substrate Behavior#

Mineral Infiltration#

  • Precursor material fills biological channels
  • Channel thickness determines infiltration rate
  • Ion saturation controls infiltration depth

Resonance Synchronization#

  • Coherence fields align biological pulses with mineral waveforms
  • Resonance gradients shape spatial alignment
  • Synchronization is required for memory transfer

Hybrid Memory Formation#

  • Biological routing memory maps into mineral defect patterns
  • Branch scars influence impurity band placement
  • Pulse pathways become resonance‑aligned guides

4. RTT Operator Mapping#

Substrate (S)#

  • S.channel_fill — infiltrate biological channels with mineral precursor
  • S.map_preserve — preserve biological geometry during infiltration
  • S.dual_substrate_alignment — maintain coherence between substrates

HybridOps#

  • HybridOps.memory_transfer — map biological memory → mineral memory
  • HybridOps.resonance_bridge — stabilize hybrid waveform alignment

Energy (E)#

  • E.resonance_sync — synchronize biological and mineral waveforms
  • E.resonance_field — generate resonance field for alignment

Gradient (G)#

  • G.resonance_gradient — shape resonance field spatially
  • G.ion_gradient — regulate infiltration depth

5. MSRM Envelope Requirements#

Ion Saturation Envelope#

Target: 0.65–0.75

  • Enables mineral infiltration
  • Supports hybrid memory transfer

Coherence Field Envelope#

Target: 0.8–1.4 kHz

  • Required for resonance synchronization
  • Aligns biological and mineral waveforms

Moisture Envelope#

Target: 0.35–0.45

  • Reduces biological activity
  • Prepares substrate for mineral lock‑in

6. Outputs of HRR#

  • Hybrid substrate layer
  • Partial mineral fill
  • Resonance‑aligned waveforms
  • Hybrid memory map
  • Dual‑substrate coherence

These outputs define the CME’s hybrid transition layer.


7. Transition to MLR#

HRR transitions into the Mineral Lock‑In Regime (MLR) when:

  • supersaturation increases
  • resonance alignment is stable
  • thermal envelope is applied

This marks the beginning of crystal lattice propagation and domain memory formation.

Updated