Slippage effect on laser phase error amplification in seeded harmonic generation free-electron lasers
Chao Feng, Haixiao Deng, Guanglei Wang, Dong Wang, Dao Xiang, and, Zhentang Zhao

TL;DR
This paper demonstrates that the slippage effect in seeded free-electron lasers can significantly smooth seed laser phase errors, preserving coherence and reducing sensitivity to initial laser imperfections, enabling nearly transform-limited soft x-ray pulses.
Contribution
The study introduces a theoretical and simulation-based analysis of the slippage effect, showing its role in mitigating seed laser phase errors in seeded FELs.
Findings
Slippage effect can smooth seed laser phase errors in FELs.
Proper modulator design reduces sensitivity to initial laser chirp.
Nearly transform-limited soft x-ray pulses are achievable with current technology.
Abstract
Free-electron lasers (FELs) seeded with external lasers hold great promise for generating high power radiation with nearly transform-limited bandwidth in soft x-ray region. However, it has been pointed out that the initial seed laser noise will be amplified by the frequency up-conversion process, which may degrade the quality of the output radiation produced by a harmonic generation scheme. In this paper, theoretical and simulation studies for laser phase error amplification in seeded FEL schemes with slippage effect taken into account are presented. It is found that, the seed laser imperfection experienced by the electron beam can be significantly smoothed by the slippage effect in the modulator when the slippage length is comparable to the laser pulse length. This smoothing effect allows one to preserve the excellent temporal coherence of seeded FELs in presence of large laser phase…
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Taxonomy
TopicsAdaptive optics and wavefront sensing · Photonic and Optical Devices · Particle Accelerators and Free-Electron Lasers
