Infrared acceleration radiation
arXiv:2206.07291 · doi:10.1007/s10701-023-00694-x
Abstract
We present an exactly soluble electron trajectory that permits an analysis of the soft (deep infrared) radiation emitted, the existence of which has been experimentally observed during beta decay via lowest order inner bremsstrahlung. Our treatment also predicts the time evolution and temperature of the emission, and possibly the spectrum, by analogy with the closely related phenomenon of the dynamic Casimir effect.
4 pages, 5 figures
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Cited by in corpus (10)
- Accelerated electron thermometer: observation of 1D Planck radiation
- Electron as a Tiny Mirror: Radiation From a Worldline With Asymptotic Inertia
- Extreme electron acceleration with fixed radiation energy
- Thermal Larmor radiation
- Larmor Temperature, Casimir Dynamics, and Planck's Law
- 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
- Electron-mirror duality and thermality
- Classical Acceleration Temperature (CAT) in a Box