Hawking Radiation in Black Hole Thermodynamics

Authors

  • Jamie Parker
  • Adrian Harris
  • Jamie Scott

Keywords:

hawking radiation, black holes, thermodynamics, entropy, quantum gravity

Abstract

This research provides an in-depth exploration of Hawking radiation and its implications for black hole thermodynamics. By employing theoretical models and semi-classical approaches, we unravel the complexities of black hole entropy and temperature. This work not only furthers our grasp of quantum gravity but also opens avenues for experimental verification.

Author Biographies

Jamie Parker

PhD in Theoretical Physics
California Institute of Technology
1200 E California Blvd, Pasadena, CA 91125, USA

Adrian Harris

PhD in Quantum Physics
ETH Zurich
Rämistrasse 101, 8092 Zürich, Switzerland

Jamie Scott

PhD in General Relativity
Chernivtsi National University
Kotsyubyns'koho St, 2, Chernivtsi, Chernivtsi Oblast, Ukraine, 58012

References

Qardaşbəyova, N. A., Quliyeva, A., & Abdullayeva, S. H. (2025). TEMPERATURE DEPENDENCE OF THE THRESHOLD CURRENT OF GaAs LASERS. ARCENG (INTERNATIONAL JOURNAL OF ARCHITECTURE AND ENGINEERING) ISSN: 2822-6895, 5(1), 200-204.

Adəm, Q. N. (2025). APPLICATION OF PHYSICS LABORATORIES IN THE ELECTRONIC LEARNING ENVIRONMENT. ARCENG (INTERNATIONAL JOURNAL OF ARCHITECTURE AND ENGINEERING) ISSN: 2822-6895, 5(1), 205-209.

Adem, G. N., & Gachay, Z. S. (2025). METAL-DIELECTRIC-SEMICONDUCTOR TRANSISTORS IN INTEGRAL CIRCUITS. German International Journal of Modern Science/Deutsche Internationale Zeitschrift für Zeitgenössische Wissenschaft, (98).

Published

2025-11-12

Issue

Section

Articles