DRS Operators — RTT/1
Operator Grammar for the Dimensional Resonance Scanner (DRS)#
These operators feed directly into:
- CW — Cross‑Domain Causality Weaver
- TRS‑Temporal — Temporal Regime Sequencer
- SBC — Stability Basin Cartographer
1. DRS‑Scan#
Detect resonance onset, polarity, and harmonic structure#
Purpose
Identify resonance onset conditions, polarity, harmonic structure, and resonance‑vector alignment.
Capabilities
- detects resonance onset
- computes resonance polarity
- computes harmonic structure
- identifies resonance signature tensors
- evaluates onset stability
Output Fields
resonance_onsetresonance_polarityharmonic_structuresignature_tensoronset_stability
2. DRS‑Frequency#
Compute resonance frequency, harmonic magnitude, and curvature#
Purpose
Evaluate resonance frequency, harmonic magnitude, harmonic curvature, and drift‑sensitive frequency behavior.
Capabilities
- computes resonance frequency
- computes harmonic magnitude
- computes frequency curvature
- detects harmonic alignment
- detects frequency inversion
Output Fields
resonance_frequencyharmonic_magnitudefrequency_curvatureharmonic_alignmentfrequency_inversion
3. DRS‑Field#
Map resonance fields and resonance topology#
Purpose
Generate resonance‑field maps showing wells, ridges, basins, tensor‑level fields, and multi‑regime resonance topology.
Capabilities
- maps resonance fields
- maps resonance wells
- maps resonance ridges
- maps resonance basins
- maps multi‑regime resonance topology
Output Fields
field_mapridge_mapbasin_mapwell_maptopology_map
4. DRS‑Vector#
Compute resonance vector magnitude, direction, and curvature#
Purpose
Evaluate resonance vector magnitude, direction, curvature, polarity alignment, and multi‑regime resonance flow.
Capabilities
- computes resonance magnitude
- computes resonance direction
- computes resonance curvature
- detects polarity alignment
- computes multi‑regime resonance flow
Output Fields
resonance_magnituderesonance_directionresonance_curvaturepolarity_alignmentmulti_regime_flow
5. DRS‑Amplify#
Identify amplification zones and resonance growth#
Purpose
Detect resonance amplification zones, harmonic growth, drift‑sensitive amplification, and instability amplification.
Capabilities
- detects amplification zones
- computes amplification depth
- computes amplification curvature
- identifies amplification boundaries
- evaluates amplification stability
Output Fields
amplification_zoneamplification_depthamplification_curvatureamplification_boundaryamplification_stability
6. DRS‑Stabilize#
Propose stabilization pathways for resonance collapse#
Purpose
Provide stabilization strategies for resonance collapse, amplification escalation, resonance‑field instability, and vector misalignment.
Capabilities
- proposes resonance stabilization
- proposes amplification mitigation
- proposes vector alignment
- proposes field stabilization
- proposes collapse reinforcement
Output Fields
stabilization_pathwayamplification_mitigationvector_alignmentfield_stabilizationcollapse_reinforcement
7. Operator Interaction Grammar#
Scan → Frequency → Field → Vector → Amplify → Stabilize#
-
DRS‑Scan
Detects resonance onset, polarity, and harmonic structure. -
DRS‑Frequency
Computes resonance frequency, harmonic magnitude, and curvature. -
DRS‑Field
Maps resonance fields, wells, ridges, basins, and topology. -
DRS‑Vector
Computes resonance vector magnitude, direction, and multi‑regime flow. -
DRS‑Amplify
Identifies amplification zones and resonance growth. -
DRS‑Stabilize
Produces stabilization pathways and resonance‑alignment strategies.
This grammar ensures deterministic resonance‑layer behavior.
8. Operator Matrix Snippet#
{
"operator": "DRS-Vector",
"resonance_magnitude": 0.83,
"resonance_direction": "R1↔R4",
"resonance_curvature": 0.52,
"polarity_alignment": 0.69,
"multi_regime_flow": 0.46
}Status#
- Version: 1.0
- Status: canon‑stable
- Category: rtt‑resonance
- Module Path:
/docs/rtt/Dimensional_Resonance_Scanner/
