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首页> 外文期刊>Japanese Journal of Applied Physics. Part 1, Regular Papers & Short Notes >Evolution of a Storage Ring Free Electron Laser Micropulse in a Macropulse Zone
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Evolution of a Storage Ring Free Electron Laser Micropulse in a Macropulse Zone

机译:在大脉冲区中无存储环电子激光微脉冲的演变

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We observed the evolution of micropulses of the storage ring free electron laser (SRFEL) in a macropulse zone with the compact storage ring NIJI-IV, and we showed that a simple simulation based on one-dimensional finite difference equations could express the characteristics of the micropulse. The calculated width of the micropulse was roughly in accord with the observed pulse width. Moreover, we showed that the macropulse intensity and the energy spread were approximately expressed by simple functions when there was only longitudinal detuning. Using these expressions for the macropulse intensity and the energy spread, we clarified that the pulse height of the intensity was greater than twice the difference between the average intensity and the minimum intensity to maintain the macropulse zone. It was also observed that the period of the increase of the energy spread in a macropulse depends negligibly on the detuning length, and this rule for the macropulse was approximately explained using simple expressions. We will be able to apply the simple simulation to investigate the peak power in a Q-switch operation.
机译:我们用紧凑的存储环NIJI-IV观察了在大脉冲区域中存储环自由电子激光(SRFEL)的微脉冲的演化,并表明基于一维有限差分方程的简单仿真可以表达电子的特征。微脉冲。计算出的微脉冲宽度大致与观察到的脉冲宽度一致。此外,我们表明,当仅存在纵向失谐时,大脉冲强度和能量散布可以通过简单函数近似表示。使用这些用于大脉冲强度和能量分布的表达式,我们澄清了该强度的脉冲高度大于平均强度和最小强度之间的差的两倍,以维持大脉冲区域。还观察到,大脉冲中能量散布的增加周期取决于失谐长度,可以忽略不计,并且使用简单的表达式大致解释了该大脉冲的规则。我们将能够应用简单的仿真来研究Q开关操作中的峰值功率。

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