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DSLO v0.8 — Simulation Geometry Surface

Version: 0.8
DOI: (Simulation Surface DOI placeholder until assignment)
Meta‑Class: SIM0 — Simulation Geometry


1. Purpose of This Surface

The Simulation Geometry Surface defines the geometric primitives used to model simulation curvature, simulation drift, simulation stability, simulation boundaries, and simulation coherence across all DSLO meta‑classes.

It is one of the twelve lawful geometry surfaces included in the DSLO v0.8 Federated Geometry Expansion.

This surface is:

  • strictly additive
  • geometry‑only
  • substrate‑derived
  • invariant‑preserving
  • non‑runtime (no execution)
  • non‑agentic
  • public‑layer safe

It introduces no physics, no substrate‑skin, no Umbrella 12, and no v0.9 references.


2. Scientific Role

The Simulation Geometry Surface provides the geometric vocabulary required to model:

Simulation Curvature Geometry

How simulation behavior bends, stabilizes, or deforms under drift, load, or cross‑domain pressure.

Simulation Drift Channels

How simulation behavior drifts lawfully across transitions, instability, or environmental change.

Simulation Stability Envelopes

How simulation maintains lawful stability under internal or external load.

Simulation Boundary Geometry

How simulation boundaries are maintained, crossed, or stabilized.

Simulation Coherence Fields

How simulation maintains coherence across multi‑domain geometry.

These primitives support:

  • simulation‑field modeling
  • lawful simulation drift propagation
  • simulation‑boundary stabilization
  • simulation‑coherence geometry
  • federated thermodynamic ecology

3. Lineage

This surface inherits exclusively from the DSLO v0.7 substrate and manifold suite.

Derived From — Six v0.7 Substrate DOIs

  • 10.5281/zenodo.21939329
  • 10.5281/zenodo.21939562
  • 10.5281/zenodo.21938890
  • 10.5281/zenodo.21939121
  • 10.5281/zenodo.21939455
  • 10.5281/zenodo.21939671

Supplemented By — v0.7 Scientific Overview

  • 10.5281/zenodo.22181245

Referenced By

Described By

These are the only lawful lineage anchors permitted for any v0.8 surface.


4. Geometry Primitives

The Simulation Geometry Surface defines the following lawful primitives:

SIM1 — Simulation Curvature Geometry

Curvature envelopes for simulation behavior across drift, collapse, and restoration.

SIM2 — Simulation Drift Channels

Drift channels for simulation transitions under load, instability, or environmental change.

SIM3 — Simulation Stability Envelopes

Stability envelopes for simulation behavior under load, drift, and systemic pressure.

SIM4 — Simulation Boundary Geometry

Boundary structures for simulation transitions and coherence.

SIM5 — Simulation Coherence Fields

Coherence fields enabling lawful simulation behavior across multi‑domain geometry.


5. Invariant Families

This surface stabilizes the following invariant families:

IF‑SIM1 — Simulation Stability Invariants

Ensure stability across simulation curvature and drift geometry.

IF‑SIM2 — Simulation Continuity Invariants

Ensure continuity across simulation drift channels and stability envelopes.

IF‑SIM3 — Simulation Preservation Invariants

Ensure identity and coherence preservation across lawful simulation transitions.


6. Continuity Bands

The surface defines two continuity bands:

CB‑SIM1 — Simulation Continuity Band

Ensures lawful continuity across simulation stability and drift geometry.

CB‑SIM2 — Simulation Boundary Continuity Band

Ensures continuity across simulation‑boundary geometry.


7. Alignment Targets

This surface aligns with:

  • geometry surfaces
  • domain surfaces
  • invariant surfaces
  • mapping surfaces
  • registry surfaces
  • ecology geometry
  • federated geometry

It does not introduce simulation execution or agentic transitions.


8. Legality & Posture

This surface follows all v0.8 legality constraints:

  • geometry‑only
  • strictly additive
  • substrate‑derived
  • invariant‑preserving
  • non‑runtime (no execution)
  • non‑agentic
  • public‑layer safe
  • no references to v0.9
  • no references to physics or substrate‑skin
  • no references to Umbrella 12
  • no references to sibling v0.8 artifacts

9. Continuity Statement

The Simulation Geometry Surface:

  • inherits exclusively from DSLO v0.7
  • extends geometry only
  • preserves all invariants
  • introduces no substrate modifications
  • remains fully lawful under DSLO v0.8
  • provides simulation‑class geometric vocabulary for federated geometry

10. Generation Metadata

Generated by: DSLO Discipline — Federated Geometry Working Group
Version: v0.8
Date: 2026‑09‑16
Status: Lawful, Substrate‑Derived, Geometry‑Only