{"@context":"https://schema.org","@type":"ScholarlyArticle","identifier":"https://research.mahastrategies.com/papers/thermodynamic-isomorphism","name":"A Unified Nonlinear Dynamical Model of Thermodynamic Runaway: Structural Analogy Between Planetary Greenhouse Effects and Mesolimbic Dopaminergic Addiction","version":"1.0.0","dateModified":"2026-06-03","creativeWorkStatus":"Working paper","reviewStatus":"Not peer reviewed","url":"https://research.mahastrategies.com/papers/thermodynamic-isomorphism","encoding":[{"@type":"MediaObject","encodingFormat":"application/pdf","contentUrl":"https://research.mahastrategies.com/papers/thermodynamic-isomorphism.pdf"},{"@type":"MediaObject","encodingFormat":"application/x-bibtex","contentUrl":"https://research.mahastrategies.com/papers/thermodynamic-isomorphism/citation.bib"},{"@type":"MediaObject","encodingFormat":"text/yaml","contentUrl":"https://research.mahastrategies.com/papers/thermodynamic-isomorphism/citation.cff"}],"citation":[{"id":"thermodynamic-isomorphism-ref-1","text":"Ingersoll, A. P. (1969). *The Runaway Greenhouse: A History of Water on Venus*. Journal of the Atmospheric Sciences, 26(6), 1191-1198.","verification":"unclassified"},{"id":"thermodynamic-isomorphism-ref-2","text":"Nakajima, S., Hayashi, Y.-Y., & Abe, Y. (1992). *A Study on the Limit of Longwave Radiation to Space from a Water-vapor-saturated Atmosphere*. Journal of the Atmospheric Sciences, 49(23), 2256-2266.","verification":"unclassified"},{"id":"thermodynamic-isomorphism-ref-3","text":"Robinson, T. E., & Berridge, K. C. (1993). *The neural basis of drug craving: An incentive-sensitization theory of addiction*. Brain Research Reviews, 18(3), 247-291.","verification":"unclassified"},{"id":"thermodynamic-isomorphism-ref-4","text":"Volkow, N. D., Wang, G. J., Fowler, J. S., & Tomasi, D. (2012). *Addiction: Beyond dopamine reward circuitry*. Proceedings of the National Academy of Sciences, 109(38), 15092-15098.","verification":"unclassified"},{"id":"thermodynamic-isomorphism-ref-5","text":"Prigogine, I. (1978). *Time, Structure, and Fluctuations*. Science, 201(4358), 777-785.","verification":"unclassified"},{"id":"thermodynamic-isomorphism-ref-6","text":"Haken, H. (1983). *Synergetics: An Introduction*. Springer-Verlag.","verification":"unclassified"},{"id":"thermodynamic-isomorphism-ref-7","text":"Ashby, W. R. (1956). *An Introduction to Cybernetics*. Chapman & Hall.","verification":"unclassified"},{"id":"thermodynamic-isomorphism-ref-8","text":"Nestler, E. J. (2008). *Transcriptional mechanisms of addiction: Role of Delta-FosB*. Philosophical Transactions of the Royal Society B: Biological Sciences, 363(1507), 3245-3255.","verification":"unclassified"}],"bibtex":"@article{rajan2026thermodynamicisomorphism,\n  author = {Rajan, Mayone Maha},\n  title = {A Unified Nonlinear Dynamical Model of Thermodynamic Runaway: Structural Analogy Between Planetary Greenhouse Effects and Mesolimbic Dopaminergic Addiction},\n  journal = {Maha Strategies Research},\n  year = {2026},\n  version = {1.0.0},\n  url = {https://research.mahastrategies.com/papers/thermodynamic-isomorphism},\n  note = {Working paper; not peer reviewed}\n}"}