...
首页> 外文期刊>Physical Review. Accelerators and Beams >High power fiber laser system for a high repetition rate laserwire
【24h】

High power fiber laser system for a high repetition rate laserwire

机译:高功率光纤激光器系统,用于高重复率激光线

获取原文

摘要

We present the development of a high power fiber laser system to investigate its suitability for use in a transverse electron beam profile monitor, i.e., a laserwire. A system capable of producing individual pulses up to $165.8ifmmodepmelseextpmi{}0.4ext{ }ext{ }ensuremath{mu}mathrm{J}$ at 1036 nm with a full width at half maximum of $1.92ifmmodepmelseextpmi{}0.12ext{ }mathrm{ps}$ at 6.49 MHz is demonstrated using a master oscillator power amplifier design with a final amplification stage in a rod-type photonic crystal fiber. The pulses are produced in trains of 1 ms in a novel burst mode amplification scheme to match the bunch pattern of the charged particles in an accelerator. This method allows pulse energies up to an order of magnitude greater than the steady-state value of $17.0ifmmodepmelseextpmi{}0.6ext{ }ext{ }ensuremath{mu}mathrm{J}$ to be achieved at the beginning of the burst with a demonstrated peak power of $25.8ifmmodepmelseextpmi{}1.7ext{ }mathrm{MW}$ after compression. The system is also shown to demonstrate excellent spatial quality with an ${M}^{2}=1.26ifmmodepmelseextpmi{}0.01$ in both dimensions, which would allow nearly diffraction limited focusing to be achieved.
机译:我们提出了一种高功率光纤激光器系统的开发,以研究其在横向电子束轮廓监测器即激光线中的适用性。该系统能够在1036 nm处产生高达$ 165.8 ifmmode pm else textpm fi {} 0.4 text {} text {} ensuremath { mu} mathrm {J} $的单个脉冲,全宽度使用主振荡器功率放大器设计和杆型最终放大级,演示了在6.49 MHz时最高$ 1.92 ifmmode pm else textpm fi {} 0.12 text {} mathrm {ps} $的一半光子晶体光纤。脉冲以新颖的突发模式放大方案以1 ms的速度产生,以匹配加速器中带电粒子的束模式。此方法所允许的脉冲能量比稳态值$ 17.0 ifmmode pm else textpm fi {} 0.6 text {} text {} ensuremath { mu} mathrm { J} $将在突发开始时达到,压缩后的峰值功率将显示为$ 25.8 ifmmode pm else textpm fi {} 1.7 text {} mathrm {MW} $。该系统还显示出出色的空间质量,在两个维度上的$ {M} ^ {2} = 1.26 ifmmode pm else textpm fi {} 0.01 $,这将允许实现几乎衍射受限的聚焦。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号