{"record":{"author":{"account_ref":null,"orcid":null},"builds_on":[],"content_schema":"pubphys.content.topic/1","content_sha256":"a0d89becf4423c4c2777fbfde5901289b8277f20965f331e5c66ae86fb9d40c5","created":"2026-10-03T07:17:53Z","files":[],"origin":{"assisted_by":[],"kind":"seed"},"parents":[],"salt":"afdfea4a791779da3da414985a2447c175b52d4f36fe2a30689d1d515562797b","schema":"pubphys.record/2","site":"pubphys.com","target":null,"type":"topic"},"content":{"external_id":"stat.absorbing-states-soc","field":"stat","n":"1","review_cite":"H. Hinrichsen, Non-equilibrium critical phenomena and phase transitions into absorbing states, Advances in Physics, 2000","review_link":"https://arxiv.org/abs/cond-mat/0001070","review_verified":"true","summary":"Some processes, like an epidemic, can die out completely and then never restart; the boundary between dying out and spreading forever is an absorbing-state transition. Self-organized criticality is the idea that some systems tune themselves to such a boundary, producing avalanches of all sizes.","title":"Absorbing-state transitions and self-organized criticality","topic_ref":null,"why":"These are the main classes of phase transitions far from equilibrium and are proposed as the origin of power laws in earthquakes, brain activity and the onset of turbulence."},"attested":{"attestation":{"batch":null,"client_id":null,"id_token_sha256":null,"kind":"platform"},"record_hash":"bf62cb2802924e75cd29f62202d97c3b272ea6e403e6777085cb51e3601ee041","schema":"pubphys.attested/1"},"envelope":{"attested_hash":"a095f158e0f832563ec3b861732f0b63276dba3eac49ce5071b8c20ddeacfc9f","platform_signature":{"key_id":"c6afc19b31429869751f06879c75cd64ea92654423d15b44be775bf1310a60da","sig":"08M2UnAK4yFXlHjUoxjTvNryypnJoo3x452FsygAgY14RGlJ009AgMSsMU3knurV3p7c9el5POqYevoqJIEMBw"},"schema":"pubphys.envelope/1"},"record_hash":"bf62cb2802924e75cd29f62202d97c3b272ea6e403e6777085cb51e3601ee041","leaf_index":349}