arXiv · 2309.08833
Black-Body Radiation in a Uniformly Accelerated Frame
Abstract
We derive Planck's radiation law in a uniformly accelerated frame expressed in Rindler coordinates. The black-body spectrum is time-dependent by its temperature and Planckian at each instantaneous time, but it is scaled by an emissivity factor that depends on the Rindler spatial coordinate and the acceleration magnitude. The observer in an accelerated frame will perceive the black-body as black, hyperblack, or grey, depending on its position with respect to the source (moving away or towards), the acceleration magnitude, and the case of whether it is accelerated or decelerated. For an observer accelerating away from the source, there exists a threshold on the acceleration magnitude beyond which it stops receiving radiation from the black-body. Since the frequency and the number of modes in Planck's law evolve over time, the spectrum is continuously red or blue-shifted towards lower (or higher) frequencies as time progresses, and the radiation modes (photons) could be created or annihilated, depending on the observer's position and its acceleration or deceleration relative to the source of radiation.
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Seramika Ariwahjoedi, Apriadi Salim Adam, Hadyan Luthfan Prihadi, Freddy Permana Zen. 2023-09-16. Black-Body Radiation in a Uniformly Accelerated Frame. https://doi.org/10.1088/1402-4896%2Fad7f09
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