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Electron bunch structure in energy recovery linac with high-voltage dc photoelectron gun

机译:高压直流光电子枪能量回收直线加速器中的电子束结构

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The internal structure of electron bunches generated in an injector line with a dc photoelectron gun is investigated. Experiments were conducted on the ALICE (accelerators and lasers in combined experiments) energy recovery linac at Daresbury Laboratory. At a relatively low dc gun voltage of 230 kV, the bunch normally consisted of two beamlets with different electron energies, as well as transverse and longitudinal characteristics. The beamlets are formed at the head and the tail of the bunch. At a higher gun voltage of 325 kV, the beam substructure is much less pronounced and could be observed only at nonoptimal injector settings. Experiments and computer simulations demonstrated that the bunch structure develops during the initial beam acceleration in the superconducting rf booster cavity and can be alleviated either by increasing the gun voltage to the highest possible level or by controlling the beam acceleration from the gun voltage in the first accelerating structure.
机译:研究了用直流光电子枪在注入器管线中产生的电子束的内部结构。在Daresbury实验室,对ALICE(加速器和激光在组合实验中)的能量回收直线加速器进行了实验。在230 kV的相对较低的直流电枪电压下,束通常由具有不同电子能量以及横向和纵向特性的两个子束组成。小束形成在束的头和尾。在较高的325 kV喷枪电压下,电子束子结构不太明显,只有在非最佳喷射器设置下才能观察到。实验和计算机模拟表明,束结构是在超导射频助力器腔体中的初始电子束加速过程中形成的,可以通过将喷枪电压增加到尽可能高的水平或通过在第一次加速时从电子枪电压控制电子束加速度来缓解束状结构结构体。

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