基于 SOC 职业分类
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Routes adaptive multi-agent deliberation with fractal context cycles. Use when using /cdo, think/deep/debug/parliament work, or long runs paired with autoresearch scheduling.
Use when you need an evidence-first provenance report from `cass`, repo docs, `.lev`, `~/.agents/diagrams`, `qmd`, or Grep/Glob tools.
Use the codebase knowledge graph for structural code queries. Triggers on: explore the codebase, understand the architecture, what functions exist, show me the structure, who calls this function, what does X call, trace the call chain, find callers of, show dependencies, impact analysis, dead code, unused functions, high fan-out, refactor candidates, code quality audit, graph query syntax, Cypher query examples, edge types, how to use search_graph.
| name | Attractors |
| description | A state or set of states toward which a dynamical system naturally evolves over time, regardless of where it starts |
| type | mental-model |
| category | systems-thinking-complexity |
| domain | dynamical-systems |
| status | active |
| confidence | high |
| source | Complexity Theory, Santa Fe Institute |
An attractor is a state or set of states toward which a dynamical system naturally evolves over time, regardless of where it starts (within a certain region). Once in an attractor, the system remains stable and resists change. Attractors explain why systems exhibit recurring patterns, why change is difficult, and why interventions often fail to stick.
Imagine a ball rolling on a landscape with valleys and hills:
Systems behave similarly - they naturally settle into stable patterns (attractors) and resist being pushed out.
Pattern: System converges to a single stable state Example: Thermostat settling at 68°F, pendulum with friction stopping at bottom Business: Mature market reaching price equilibrium Indicator: All nearby trajectories converge to same fixed point
Pattern: System cycles through repeated sequence Example: Predator-prey populations, seasonal business cycles Business: Boom-bust economic cycles, fashion trend cycles Indicator: Periodic behavior that returns to same pattern
Pattern: Multiple independent rhythms interacting Example: Circadian + seasonal + lunar cycles Business: Multiple overlapping business cycles Indicator: Quasi-periodic but non-repeating patterns
Pattern: Bounded but never-repeating, fractal structure Example: Weather systems, turbulent flow Business: Stock market dynamics, viral social media trends Indicator: Sensitive dependence on initial conditions within bounded region
Region of initial conditions that flow toward the same attractor. Larger basins = more resilient attractors.
Boundaries between basins - critical tipping points where small changes determine which attractor captures the system.
Mathematical measure of sensitivity to initial conditions:
To Shift to New Attractor:
To Escape Current Attractor:
Attractor: "Hero culture" where individuals firefight problems Basin: Reinforced by reward systems, promotion criteria, folklore Intervention: Requires crossing separatrix to "systems thinking" attractor - can't change by incremental tweaks Failure Mode: Training programs perturb but don't cross basin boundary - system returns to hero culture
Attractor 1: Non-user equilibrium (status quo) Attractor 2: Active user equilibrium (habit formed) Separatrix: Activation energy / onboarding friction Strategy: Reduce friction enough to cross into active user basin, then habit loops sustain it
Attractor: Oligopoly equilibrium with 3 major players Stability: Price wars push back toward equilibrium Strange Attractor: Cryptomarkets - chaotic but bounded dynamics Limit Cycle: Hype-crash-recovery cycles in tech stocks
Attractor 1: High-trust, high-performance (virtuous cycle) Attractor 2: Low-trust, dysfunction (vicious cycle) Separatrix: Critical incidents that break or build trust Intervention: Intensive team-building must cross threshold to flip basins
Detect Attractors:
Measure Basin Size:
Estimate Stability:
Source: Complexity theory, dynamical systems mathematics, Santa Fe Institute research Related Frameworks: Basins of Attraction, Lyapunov Stability, Phase Space Analysis