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Physics of JLAB FEL injector Jefferson Laboratory

机译:JLAB FEL注射器的物理原理杰斐逊实验室

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Jefferson Laboratory is currently commissioning a high-power kW-level cw IR FEL which recently demonstrated impressive high-power capability with the linac operating in a nonrecirculating mode. The injector, which provides a 10 MeV electron beam with high bunch charge (60-135 pC) to the linac, consists of a 350 kV dc photocathode gun and two 5-cell superconducting RF cavities, along with a buncher cavity. Due to the nonrelativistic nature of the electron beam at 350 keV there is some interesting physics involved in the /spl beta/=1 SRF cavities during acceleration. This is discussed, as is the usual space-charge-originated emittance degradation at various injector components.
机译:杰斐逊实验室目前正在调试大功率kW级连续红外红外FEL,该直线加速器最近以直线加速器在非再循环模式下运行而展示出令人印象深刻的大功率能力。该喷射器向线性加速器提供具有高束电荷(60-135 pC)的10 MeV电子束,由350 kV直流光电阴极枪和两个5单元超导RF腔以及一个束腔组成。由于电子束在350 keV时具有非相对论性,因此在加速期间/ spl beta / = 1 SRF腔中涉及一些有趣的物理现象。讨论了这一点,正如在各种喷射器组件处产生的通常由空间电荷引起的发射率下降一样。

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