Electron as a Tiny Mirror: Radiation From a Worldline With Asymptotic Inertia
arXiv:2302.00266 · doi:10.3390/physics5010010
Abstract
We present a moving mirror analog of the electron, whose worldline possesses asymptotic constant velocity with corresponding beta Bogolubov coefficients that are consistent with finite total emitted energy. Furthermore, the quantum analog model is in agreement with the total energy obtained by integrating the classical Larmor power.
4 pages, 4 figures
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Cited by in corpus (7)
- Accelerated electron thermometer: observation of 1D Planck radiation
- Infrared acceleration radiation
- Thermal Larmor radiation
- IR-finite thermal acceleration radiation
- Stopping to Reflect: Asymptotic Static Moving Mirrors as Quantum Analogs of Classical Radiation
- Classical acceleration temperature from evaporated black hole remnants and accelerated electron-mirror radiation
- Classical Acceleration Temperature (CAT) in a Box