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@inproceedings{robles:ipac2021-tupab085,
author = {R. Robles and J.B. Rosenzweig and S.B. van der Geer},
title = {{Three-Dimensional Radiative Effects in the Compression of Ultra-Short Electron Micro-Bunches}},
booktitle = {Proc. IPAC'21},
pages = {1577--1580},
eid = {TUPAB085},
language = {english},
keywords = {emittance, FEL, electron, laser, simulation},
venue = {Campinas, SP, Brazil},
series = {International Particle Accelerator Conference},
number = {12},
publisher = {JACoW Publishing, Geneva, Switzerland},
month = {08},
year = {2021},
issn = {2673-5490},
isbn = {978-3-95450-214-1},
doi = {10.18429/JACoW-IPAC2021-TUPAB085},
url = {https://jacow.org/ipac2021/papers/tupab085.pdf},
note = {https://doi.org/10.18429/JACoW-IPAC2021-TUPAB085},
abstract = {{Micro-bunched current profiles have recently gained traction as an alternative to bulk compression in certain free-electron laser applications. The attraction of the micro-bunched structure is owed in part to its promise to minimize deleterious effects associated with coherent synchrotron radiation during compression. Simultaneously, these profiles push the boundaries of traditional one-dimensional CSR simulation models which assume the bunch length to far exceed the transverse beam size in the bunch rest frame - an assumption which may be violated by the sub-micron length micro-bunches. Here we present simulation studies of the impact of three-dimensional CSR effects on micro-bunching based compression schemes using the General Particle Tracer code.}},
}