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Powerful Long-Pulse Bragg FEL of Sub-THz to THz-band: Simulations and Tests of Electrodynamic System

机译:子THz的强大的长脉冲布拉格FEL到THz频段:仿真和电动系统的测试

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Project of high-power long-pulse FEL operating from sub-THz to THz-band is initiated in collaboration between BINP RAS (Novosibirsk) and IAP RAS (N.Novgorod) based on the linac “LIU” 5 – 20 MeV/2 kA/200 ns of the new generation. The aim of this project is to achieve a record sub-GW power level and pulse energy content up to 10 – 100 J at THz frequencies. An advanced Bragg resonator based on coupling of propagating and quasi-cutoff waves and capable to provide stable narrow-band generation in strongly oversized interaction space is one of the key components of this FEL. Proof-of-principle operation of FEL with the resonator of such type has been already demonstrated up to W-band and narrow band generation at multi-MW power level has been observed for the transverse oversize factor (diameter) of ~ 5 wavelengths. The paper presents design parameters, results of simulations and “cold” tests of electrodynamic system for FELs operating from 300 GHz to 600 GHz under the oversize factor of ~ 20 and higher.
机译:20兆电子伏/ 2 kA的 - 从子太赫兹到太赫兹波段的高功率长脉冲FEL操作的项目是在协作基于所述直线加速器“LIU” 5 BINP RAS(西伯利亚)和IAP RAS(N.Novgorod)之间发起/新一代的200纳秒。该项目的目的是要实现记录子GW功率水平和脉冲能量含量高达10 - 在THz频率100焦耳。基于传播和准截止波并且能够在强烈超大相互作用空间提供稳定窄带代的耦合的先进的布拉格谐振器是这样的FEL的关键部件之一。 FEL与这种类型的谐振器验证的原理操作已经在多兆瓦的功率电平已经做过演示高达W波段和窄频带代已经观察到〜5种波长的横向尺寸过大的因子(直径)。本文提出了设计参数,模拟结果和〜20及以上的特大型因素下运行,从300 GHz到600 GHz的自由电子激光器电动系统的“冷”的测试。

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