Stability Enhancement of a Self-Amplified Spontaneous Emission Free-electron Laser with Bunching Containment

Fuente: arXiv
Saved in:
Bibliographic Details
Main Authors: Yi, Huaiqian, Wang, Xiaofan, Zeng, Li, Liang, Yifan, Zhang, Weiqing
Format: Preprint
Published: 2025
Subjects:
Online Access:
Tags: Add Tag
No Tags, Be the first to tag this record!
_version_ 1866912263762345984
author Yi, Huaiqian
Wang, Xiaofan
Zeng, Li
Liang, Yifan
Zhang, Weiqing
author_facet Yi, Huaiqian
Wang, Xiaofan
Zeng, Li
Liang, Yifan
Zhang, Weiqing
contents The self-amplified spontaneous emission (SASE) mechanism, the fundamental operating principle of numerous free-electron laser (FEL) facilities, is driven by electron beam shot noise and leads to significant fluctuations in the output pulse energy. This study presents a robust method for improving pulse energy stability by incorporating a dispersion element that introduces longitudinal dispersion into the electron beam during the exponential growth phase of the SASE process. At this phase, the density modulation of the electron beam, characterized by the bunching factor, undergoes large fluctuations, resulting in substantial variations in the emitted radiation power. The introduction of longitudinal dispersion allows for controlled manipulation of the bunching distribution, suppressing fluctuations and enhancing pulse energy stability. The stabilization mechanism is explained in this paper, and its impact on the radiation properties is analyzed for both the standard SASE scheme and advanced lasing setups, such as a two-stage lasing process for two-color pulse generation, with the initial stage operating in SASE mode.
format Preprint
id arxiv_https___arxiv_org_abs_2503_05187
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle Stability Enhancement of a Self-Amplified Spontaneous Emission Free-electron Laser with Bunching Containment
Yi, Huaiqian
Wang, Xiaofan
Zeng, Li
Liang, Yifan
Zhang, Weiqing
Accelerator Physics
The self-amplified spontaneous emission (SASE) mechanism, the fundamental operating principle of numerous free-electron laser (FEL) facilities, is driven by electron beam shot noise and leads to significant fluctuations in the output pulse energy. This study presents a robust method for improving pulse energy stability by incorporating a dispersion element that introduces longitudinal dispersion into the electron beam during the exponential growth phase of the SASE process. At this phase, the density modulation of the electron beam, characterized by the bunching factor, undergoes large fluctuations, resulting in substantial variations in the emitted radiation power. The introduction of longitudinal dispersion allows for controlled manipulation of the bunching distribution, suppressing fluctuations and enhancing pulse energy stability. The stabilization mechanism is explained in this paper, and its impact on the radiation properties is analyzed for both the standard SASE scheme and advanced lasing setups, such as a two-stage lasing process for two-color pulse generation, with the initial stage operating in SASE mode.
title Stability Enhancement of a Self-Amplified Spontaneous Emission Free-electron Laser with Bunching Containment
topic Accelerator Physics
url https://arxiv.org/abs/2503.05187