Santa Fe
Institute
  • Research
    • Themes
    • Projects
    • SFI Press
    • Researchers
    • Publications
    • Library
    • Sponsored Research
    • Fellowships
    • Miller Scholarships
  • News + Events
    • News
    • Newsletters
    • Podcasts
    • SFI in the Media
    • Media Center
    • Events
    • Community
    • Journalism Fellowship
  • Education
    • Programs
    • Projects
    • Alumni
    • Complexity Explorer
    • Education FAQ
    • Postdoctoral Research
    • Education Supporters
  • People
    • Researchers
    • Fractal Faculty
    • Staff
    • Miller Scholars
    • Trustees
    • Governance
    • Resident Artists
    • Research Supporters
  • Applied Complexity
    • Office
    • Applied Projects
    • ACtioN
    • Applied Fellows
    • Studios
    • Applied Events
    • Login
  • Give
    • Give Now
    • Ways to Give
    • Contact
  • About
    • About SFI
    • Engage
    • Complex Systems
    • FAQ
    • Campuses
    • Jobs
    • Contact
    • Library
    • Employee Portal

Science for a Complex World

Events

Here's what's happening

Give

You make SFI possible

Subscribe

Sign up for research news

Connect

Follow us on social media

© 2026 Santa Fe Institute. All rights reserved. This site is supported by the Miller Omega Program.

Home

Irreversible Processes in Ecological Evolution

  • About
  • Program
  • Participants
  • Summary

Date: January 29, 2019 - January 31, 2019

Meeting Synopsis

An ink drop placed in water will dissolve and homogenize, never to return back to its original state. Many-body processes involving stochastic forces universally and irreversibly lead to entropy maximizing distributions. This working group aims to ask what the analog of ‘dissolving ink’ is in the context of ecological evolution. Specifically, this WG will explore irreversible changes in the ecological interaction structure and their consequences. Of particular interest are theoretical frameworks that incorporate dynamics as well as experimental approaches that can track irreversible transitions in strongly interacting populations. Key foci for this WG are the directionality of the coevolution of interspecific interactions and ecological transitions, and the synthetic control of such transitions.

 
This event is supported by the James S. McDonnell Foundation Grant Number 220020491, Adaptation, Aging, and the Arrow of Time. Any opinions, findings, conclusions or recommendations expressed in this material are those of the author(s) and do not necessarily reflect the views of the James S. McDonnell Foundation.




  • Resources
  • A communal catalogue reveals Earth's multiscale microbial diversity
  • Adaptive foraging allows the maintenance of biodiversity of pollination networks
  • Available energy fluxes drive a transition in the diversity, stability, and functional structure of microbial communities
  • Correlation between interaction strengths drives stability in large ecological networks
  • Differential and enhanced response to climate forcing in diarrheal disease due to rotavirus across a megacity of the developing world
  • Eco-Evolutionary Theory and Insect Outbreaks
  • Effects of host heterogeneity on pathogen diversity and evolution
Show more