Jesús Gómez-Gardeñes

Full Professor at University of Zaragoza & Head of GOTHAM Lab. Research on Networks and Complex Systems Science.
Zaragoza
. Spain
Contributor Since August 2025

I am Full Professor of Physics at the University of Zaragoza, where I lead the Group of Theoretical & Applied Modeling (GOTHAM lab) at BIFI. My research lies at the interface of statistical physics, nonlinear dynamics, and complex networks, with a focus on understanding collective phenomena such as synchronization, explosive transitions, epidemic spreading, and evolutionary dynamics. I have made recognized contributions to multilayer and higher-order systems, stochastic processes on networks, and reaction–diffusion epidemic models, with results published in top journals including Nature Physics, Nature Human Behavior, PNAS, Science Advances, Physical Review X, and Nature Communications. My work has been acknowledged with the “Investigador Novel” prize in Theoretical Physics from the Royal Spanish Society of Physics and by several international distinctions, such as SUPA Distinguished Visitor, CNPq Special Visiting Researcher in Brazil, and Research Fellow at the Center for Computational Social Science in Kobe University.

Beyond research, I have dedicated significant effort to fostering scientific collaboration and community building in Latin America. I am co-founder and organizer of the Latin American Conference on Complex Networks (LANET), with past editions held in Puebla (2017), Cartagena (2019), Cusco (2023) and Punta del Este (2025), and the school ENREDANDO, with past editions held in Lima 2022 and Bogotá 2024. These initiatives aim at connecting groups in Latin America that, despite their geographical closeness, rarely interact, and to promote the careers of young researchers from the region. I have also organized advanced schools at ICTP-SAIFR in São Paulo, designed to train young researchers from across the region. In parallel, and aligned with these initiatives, I have mentored PhD students in my lab from Mexico, Colombia, and Brazil, helping to strengthen the next generation of scientists in the field of complex systems. These initiatives have contributed to consolidating a vibrant regional network that is now producing sustained collaborations and impactful research.

More
Nothing yet!
January 29, 2026
Is self-organization the answer to the foundational question of why life exhibits such complexity? And can it also serve as a guiding framework for how best to save complex webs of biodiversity amid the onslaughts of the modern world? Self-organization exists throughout nature and socioeconomic structures. It refers to the spontaneous emergence of collective, complex order within a disordered system, due to localized interactions that follow simple rules, and occurring without external controls. While conceptually abstract, given that uncertainty lies at its core, the applications of self-organization are everywhere. Advancing our understanding of the non-linear processes within complex systems that drive self-organization is also becoming increasingly important for developing evidence-based policies in a world defined by interdependence and escalating stressors. Indigenous cultures, such as those that live within complex socio-ecological systems in the Amazon ecoregion, have long embraced these principles of uncertainty, interconnectedness, and non-linear dynamics. How will their wisdom, experience, and models of socio-ecological systems integrate with evidence-based policies for protecting the Amazon ecoregion? Safeguarding the Amazon is one of our world’s most pressing, complex, and vital global challenges. Among the strategies gaining traction, supported by increasing financial investment, is the intriguing proposition to transform a portion of the region’s immense biodiversity into a sustainable “bioeconomy.” However, these proposals, and the policy makers responsible for negotiating their implementation across boundaries and cultures, often lack an understanding of how both economies and ecologies self-organize and scale. Data-driven models of self-organization and critical collective phenomena in the natural world and within traditional Indigenous sociocultural structures, along with adaptive context-based frameworks, can help guide the transboundary development of a decentralized and circular socio-bioeconomy for the Amazon. Self-Organized Criticality and the Edge of Chaos Pioneering research on self-organized criticality (SOC) began in the 1980s and was made accessible to a wider audience by...
DSC07445
Daniel Henryk Rasolt
November 24, 2025
Investment in science is a pillar for any dynamic, equitable modern society, and promoting scientific literacy across all levels of society can help foster innovation, dialogue, and consensus that crosses disciplinary and cultural boundaries. Science also helps to uncover answers to foundational questions that have captivated, confounded, and divided our species for millennia. But what is “science,” and what kind of “evidence” ensures that an approach is scientific? If we take “science” to broadly mean, in its purest sense, a “dynamic search for the truth,” or more explicitly, “the pursuit and application of knowledge and understanding of the natural and social world following a systematic methodology based on evidence,” as the Science Council aptly defines it, then science extends beyond the established, highly specialized disciplines of reductionist natural sciences (physics, chemistry, biology, geoscience, and space science) that have been so successful in fostering our understanding of our planet and the cosmos. Under this definition, science also includes the rigorous data-driven (qualitative and quantitative) social sciences, the inherently non-reductionist “holistic” sciences such as ecological and Earth system sciences, and the budding interdisciplinary field of complex systems science, as well as robust traditional knowledge systems based on multi-generational experiences, observations, and reasoning. As with science, “evidence” can mean a lot of things as well, including primary research, pre-existing data, past and planned experiments, and the referencing of peer-reviewed publications and primary sources. It can also include local and traditional knowledge, thought experiments, theoretical proofs, contemplation, verifiable personal experience, and empirical observation. Broadening and weaving together these forms of scientific evidence holds the potential to address complex, interconnected global challenges and explain deep mysteries that could help unify our polarized societies around foundational understandings. Foundational Questions Foundational questions can transcend the divides of generations and cultures: Cosmology, physics, and evolutionary biology have shed...
DSC07445
Daniel Henryk Rasolt

Jesús Gómez-Gardeñes: LANET, Complex Networks, Modeling Epidemics, and Fostering Collaboration

Coming Soon
Coming Soon
This user hasn't joined any of the InterGroups yet.
Jesús Gómez-Gardeñes has joined The Interplex
on August 20, 2025
Jesús Gómez-Gardeñes has joined the The InterPlex Public Forum Group
on August 20, 2025

Login

Update Password

Update Password *
Confirm New Password *

Sign up to get The InterPlex newsletter