CERN, 1211 Geneva, Switzerland.
University of Oslo, 0316 Oslo, Norway.
Phys Rev Lett. 2019 Feb 8;122(5):054801. doi: 10.1103/PhysRevLett.122.054801.
We measure the effects of transverse wakefields driven by a relativistic proton bunch in plasma with densities of 2.1×10^{14} and 7.7×10^{14} electrons/cm^{3}. We show that these wakefields periodically defocus the proton bunch itself, consistently with the development of the seeded self-modulation process. We show that the defocusing increases both along the bunch and along the plasma by using time resolved and time-integrated measurements of the proton bunch transverse distribution. We evaluate the transverse wakefield amplitudes and show that they exceed their seed value (<15 MV/m) and reach over 300 MV/m. All these results confirm the development of the seeded self-modulation process, a necessary condition for external injection of low energy and acceleration of electrons to multi-GeV energy levels.
我们测量了密度分别为 2.1×10^{14} 和 7.7×10^{14} 电子/cm^{3}的等离子体中相对论质子束驱动的横向尾流的影响。我们表明,这些尾流周期性地使质子束本身散焦,这与种子自调制过程的发展一致。我们通过使用质子束横向分布的时间分辨和时间积分测量,表明这种散焦沿着束和等离子体都在增加。我们评估了横向尾场幅度,并表明它们超过了种子值(<15 MV/m),达到了 300 MV/m 以上。所有这些结果都证实了种子自调制过程的发展,这是外部注入低能和加速电子到多 GeV 能级的必要条件。