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March 30, 20260 citationsOpen Access

Where the Quantum World Meets Gravity: Entanglement Entropy and the Thermodynamics of Black Holes

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LZL. G. ZazunovMSMichael Shatnev

Key Points

  • This research aims to connect quantum entanglement and thermodynamics through black holes.
  • Introduced concepts of quantum information theory and entanglement entropy
  • Explored the area law and Hawking radiation
  • Discussed modern results including Ryu-Takayanagi formula and quantum extremal surfaces
  • Established entanglement entropy as foundational to black hole thermodynamics
  • Highlighted the significance of the Page curve and replica wormholes
  • Provided physical intuition around complex quantum gravity concepts

Abstract

Black holes are windows into the deepest structures of reality, where quantum mechanics, thermodynamics, and geometry converge. In this pedagogical preprint we explore how quantum entanglement entropy provides a microscopic foundation for black hole thermodynamics. Starting from rst principles of quantum information theory, we introduce entanglement entropy, the area law, and Hawking radiation, then proceed to modern results: the Ryu-Takayanagi formula, quantum extremal surfaces, the Page curve, replica wormholes, and the island formula. Throughout, the emphasis is on physical intuition. No prior knowledge of string theory or loop quantum gravity is assumed.

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Cite This Study

Zazunov et al. (2026) studied this question.

synapsesocial.com/papers/69c9c553f8fdd13afe0bd20dhttps://doi.org/10.5281/zenodo.19290945
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