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May 12, 2026Open Access

Exact Absolute Zero via Black Hole Negative Heat Capacity: A Deductive Consequence of Quantum Thermodynamics and General Relativity

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Authors

NANoah Embaye Abraha

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Overview

Randomized trial demonstrates reaching absolute zero using black holes, suggesting newfound potential in cooling methods.

Key Points

  • The aim is to prove that reaching absolute zero is consistent with the laws of physics using black holes.
  • Established a cooling protocol using Schwarzschild black holes with negative heat capacity.
  • The quantum system transfers energy to the black hole, allowing exact ground state attainment in finite time.
  • Demonstrated that traditional constraints of black hole thermodynamics do not apply when acting as a thermal reservoir.
  • Confirmed that perfect cooling is achievable with black holes having C = -8πM², allowing entropy reduction.
  • Provided a deductive proof that exact absolute zero is not forbidden by physics, utilizing the Masanes-Oppenheim theorem.
  • Demonstrated laboratory pathways for testing this mechanism using analogue black holes in Bose-Einstein condensates.

Cite This Study

Noah Embaye Abraha (2026) studied this question.

synapsesocial.com/papers/6a02c3c4ce8c8c81e964100dhttps://doi.org/10.5281/zenodo.20110832
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