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February 21, 20260 citationsOpen Access

The Dissipation Imperative: Biological Complexity as a Quantum-Thermodynamic Relaxation Channel

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GFGiovanni Frisina

Key Points

  • To investigate how biological systems contribute to entropy production in the context of open system cosmology.
  • Derived a Spectral Dissipation Inequality to compare biosphere entropy production with sterile surfaces.
  • Linked biological excitonic transfer timescales to gravitational decoherence rates in geometric brane-world models.
  • Explored implications of advanced intelligences as 'Super-Dissipators' achieving thermodynamic equilibrium.
  • Demonstrated that biospheres produce entropy at a much higher rate than non-living surfaces.
  • Proposed that life adapts to the fundamental noise of the 5D Bulk geometry.
  • Offered a thermodynamic explanation for the Fermi Paradox relating to invisible advanced intelligences.

Abstract

We address the existence of biological complexity within the context of Open System Cosmology. Standard thermodynamic arguments posit life as a statistical anomaly in a universe tending toward heat death. However, if the Universe is treated as an open system driven by a continuous flux of low-entropy energy (Pin) from an external manifold, the perspective shifts. According to the principle of Maximum Entropy Production (MEPP), matter in such non-equilibrium conditions self-organizes to maximize the rate of dissipation. We derive a "Spectral Dissipation Inequality" demonstrating that a biosphere produces entropy at a significantly higher rate than a sterile surface. Crucially, we propose that this efficiency relies on Environment-Assisted Quantum Transport (ENAQT). By linking the timescales of biological excitonic transfer to gravitational decoherence rates derived in geometric brane-world models, we argue that life has evolved to be "tuned" to the fundamental noise of the 5D Bulk geometry. Finally, we propose a thermodynamic solution to the Fermi Paradox: advanced intelligences are not explorers but "Super-Dissipators" that evolve towards thermodynamic equilibrium with the cosmic background (Dyson swarms), rendering them invisible. Life is identified not as a privileged observer, but as a necessary "exhaust valve" for the cosmological engine.

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Cite This Study

Giovanni Frisina (2026) studied this question.

synapsesocial.com/papers/69994cdf873532290d021cd0https://doi.org/10.5281/zenodo.18700858
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