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首页> 外文期刊>Plasma physics and controlled fusion >Evidence for high-energy and low-emittance electron beams using ionization injection of charge in a plasma wakefield accelerator
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Evidence for high-energy and low-emittance electron beams using ionization injection of charge in a plasma wakefield accelerator

机译:在等离子流场加速器中使用电离注入电荷获得高能和低发射率电子束的证据

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摘要

Ionization injection in a plasma wakefield accelerator was investigated experimentally using two lithium plasma sources of different lengths. The ionization of the helium gas, used to confine the lithium, injects electrons in the wake. After acceleration, these injected electrons are observed as a distinct group from the drive beam on the energy spectrometer. They typically have a charge of tens of pC, an energy spread of a few GeV, and a maximum energy of up to 30 GeV. The emittance of this group of electrons can be many times smaller than the initial emittance of the drive beam. The energy scaling for the trapped charge from one plasma length to the other is consistent with the blowout theory of the plasma wakefield.
机译:使用两个不同长度的锂等离子体源,通过实验研究了等离子体尾流加速器中的电离注入。用于限制锂的氦气的电离会在尾流中注入电子。加速后,这些注入的电子与能量谱仪上的驱动束以不同的形式被观察到。它们通常具有数十pC的电荷,几GeV的能量散布和最大30 GeV的最大能量。这组电子的发射率可以比驱动束的初始发射率小许多倍。从一个等离子体长度到另一等离子体长度的捕获电荷的能量标度与等离子体尾波场的爆裂理论是一致的。

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