SwarmWorld: Stigmergic technological evolution in societies of language-model agents
AuthorsSubhadeep Pal, Fiona Y. Wang, Markus J. Buehler
Resources
SwarmWorld shows how language-model agents can collectively evolve technologies through shared environments, physical artifacts, and emergent social organization rather than direct coordination alone.
Key results
Largest population used in the primary scaling study, which compared societies from 50 to 200 agents.
Mean long-horizon portfolio resilience at 3,200 ticks.
Mean best-of-100 independent-search portfolio resilience at 3,200 ticks.
Mean inventions for the no-explicit-culture shared-world condition at 3,200 ticks.
Mean inventions for the independent-search baseline at 3,200 ticks.
Percentage-point increase under full culture relative to no explicit culture.
What the paper found
SwarmWorld tests whether homogeneous language-model agents can evolve technology through stigmergy rather than merely search in parallel. Using GPT-5.6-luna agents, the system places populations of 50 to 200 agents in a persistent, spatially constrained world where they gather resources, process materials, build artifacts, and write executable controllers. A deterministic simulator, not agent claims, determines legality and function; after discovery, agents are removed and frozen societies face eight unseen disturbance schedules. Compared with an endpoint-wise best-of-N independent-search baseline, shared worlds produced broader, more resilient portfolios, although isolated search remained strongest for single-object optimization. At 3,200 ticks, portfolio resilience reached 0.2474 with full culture versus 0.1794 for isolated search, while validated inventions reached 7.00 versus 2.75. Explicit communication, teaching, trading, and code inheritance accelerated social and technological organization but were not universally beneficial: artifact-only stigmergy often matched or exceeded full culture. Label-blind clustering recovered exploration, construction, maintenance, and coordination states without assigned roles; full culture increased the artifact-centered fraction by 21.8 percentage points. Most technology reuse began through physical observation—about 95 percent—rather than direct inventor-to-adopter communication. The study’s central result is a bounded swarm advantage: interaction creates a persistent technological ecology with cumulative executable lineages and distributed redundancy, not a universal improvement in the best individual invention.
Original abstract
Collective intelligence can emerge when individuals coordinate through a shared environment, allowing local actions to accumulate into durable social organization. Language-model agents offer a new substrate for this process, yet most multi-agent systems rely on direct conversation, predefined roles, or centralized workflows. It remains unclear whether decentralized agents can build functional technologies and outperform independent search. Here, initially homogeneous LLM agents in SwarmWorld self-organize without assigned roles or recipes into evolving technological societies. Agents explore a spatial environment, process resources, test materials, construct persistent artifacts, and write executable controllers evaluated by a deterministic simulator under unseen disturbances after the agents are removed. SwarmWorld splits cognition from consequence: agents propose architectures and controllers within fixed action and material schemas, while the simulated world determines function. Shared societies develop broader, more resilient technological portfolios than a strong best-of-N isolated-search baseline, although isolated search remains competitive for the strongest artifact. Agents differentiate into exploration, construction, maintenance, and coordination behaviors, transitioning as the world matures. Technologies accumulate through collaborative construction, executable inheritance, and persistent agent-artifact networks, with most reuse beginning through physical observation rather than communication. Explicit cultural mechanisms amplify collaboration and organization, but functional benefits depend on outcome and timescale. Physical stigmergy alone supports capable societies, while interaction drives persistent technological ecologies rather than universally superior individual inventions.
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