Larmor Temperature, Casimir Dynamics, and Planck’s Law


Ievlev E. Good M.R.R.
September 2023Multidisciplinary Digital Publishing Institute (MDPI)

Physics (Switzerland)
2023#5Issue 3797 - 813 pp.

Classical radiation from a single relativistically accelerating electron is investigated where the temperature characterizing the system highlights the dependence on acceleration. In the context of the dynamic Casimir effect with Planck-distributed photons and thermal black hole evaporation, we demonstrate analytic consistency between the ideas of constant acceleration and equilibrium thermal radiation. For ultra-relativistic speeds, we demonstrate a long-lasting constant peel acceleration and constant power emission, which is consistent with the idea of balanced equilibrium of Planck-distributed particle radiation.

acceleration radiation , beta decay , black hole evaporation , moving mirrors

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Physics Department & Energetic Cosmos Laboratory, Nazarbayev University, Astana, 010000, Kazakhstan
Theoretical & Nuclear Physics Department, al-Farabi Qazaq National University, Almaty, 050040, Kazakhstan
National Research Center “Kurchatov Institute”, Petersburg Nuclear Physics Institute, St. Petersburg, 188300, Russian Federation
Leung Center for Cosmology and Particle Astrophysics, National Taiwan University, Taipei, 10617, Taiwan

Physics Department & Energetic Cosmos Laboratory
Theoretical & Nuclear Physics Department
National Research Center “Kurchatov Institute”
Leung Center for Cosmology and Particle Astrophysics

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