Instantaneous and Retarded Interactions in Coherent Radiation

Fuente: arXiv
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Main Authors: Liu, Zhuoyuan, Deng, Xiujie, Li, Tong, Yan, Lixin
Format: Preprint
Published: 2024
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author Liu, Zhuoyuan
Deng, Xiujie
Li, Tong
Yan, Lixin
author_facet Liu, Zhuoyuan
Deng, Xiujie
Li, Tong
Yan, Lixin
contents In coherent radiation of an ensemble of electrons, radiation field from electrons resonantly drives the other electrons inside to produce stimulated emission. The radiation reaction force on the electrons accounting for this stimulated radiation loss is classically described by the Lienard-Wiechert potential. Despite its being the foundation of beam physics for decades, we show that using the "acceleration field'' in Lienard-Wiechert potential to describe radiative interactions leads to divergences due to its implicit dependence on instantaneous interactions. Here, we propose an alternative theory for electromagnetic radiation by decomposing the interactions into instantaneous part and retarded part. It is shown that only the retarded part contributes to the irreversible radiation loss and the instantaneous part describes the space charge related effects. We further apply this theory to study the coherent synchrotron radiation wake, which hopefully will reshape our understanding of coherent radiation and collective interactions.
format Preprint
id arxiv_https___arxiv_org_abs_2407_08579
institution arXiv
publishDate 2024
record_format arxiv
spellingShingle Instantaneous and Retarded Interactions in Coherent Radiation
Liu, Zhuoyuan
Deng, Xiujie
Li, Tong
Yan, Lixin
Accelerator Physics
In coherent radiation of an ensemble of electrons, radiation field from electrons resonantly drives the other electrons inside to produce stimulated emission. The radiation reaction force on the electrons accounting for this stimulated radiation loss is classically described by the Lienard-Wiechert potential. Despite its being the foundation of beam physics for decades, we show that using the "acceleration field'' in Lienard-Wiechert potential to describe radiative interactions leads to divergences due to its implicit dependence on instantaneous interactions. Here, we propose an alternative theory for electromagnetic radiation by decomposing the interactions into instantaneous part and retarded part. It is shown that only the retarded part contributes to the irreversible radiation loss and the instantaneous part describes the space charge related effects. We further apply this theory to study the coherent synchrotron radiation wake, which hopefully will reshape our understanding of coherent radiation and collective interactions.
title Instantaneous and Retarded Interactions in Coherent Radiation
topic Accelerator Physics
url https://arxiv.org/abs/2407.08579