Tang Heng, Zhao Lingrong, Zhu Pengfei, Zou Xiao, Qi Jia, Cheng Ya, Qiu Jiaqi, Hu Xianggang, Song Wei, Xiang Dao, Zhang Jie
Key Laboratory for Laser Plasmas (Ministry of Education), School of Physics and Astronomy, Shanghai Jiao Tong University, Shanghai 200240, China.
Collaborative Innovation Center of IFSA (CICIFSA), Shanghai Jiao Tong University, Shanghai 200240, China.
Phys Rev Lett. 2021 Aug 13;127(7):074801. doi: 10.1103/PhysRevLett.127.074801.
Particle accelerators that use electromagnetic fields to increase a charged particle's energy have greatly advanced the development of science and industry since invention. However, the enormous cost and size of conventional radio-frequency accelerators have limited their accessibility. Here, we demonstrate a miniaccelerator powered by terahertz pulses with wavelengths 100 times shorter than radio-frequency pulses. By injecting a short relativistic electron bunch to a 30-mm-long dielectric-lined waveguide and tuning the frequency of a 20-period terahertz pulse to the phase-velocity-matched value, precise and sustained acceleration for nearly 100% of the electrons is achieved with the beam energy spread essentially unchanged. Furthermore, by accurately controlling the phase of two terahertz pulses, the beam is stably accelerated successively in two dielectric waveguides with close to 100% charge coupling efficiency. Our results demonstrate stable and scalable beam acceleration in a multistage miniaccelerator and pave the way for functioning terahertz-driven high-energy accelerators.
自发明以来,利用电磁场增加带电粒子能量的粒子加速器极大地推动了科学和工业的发展。然而,传统射频加速器的巨大成本和尺寸限制了它们的可及性。在此,我们展示了一种由太赫兹脉冲驱动的微型加速器,其波长比射频脉冲短100倍。通过将一个短相对论电子束注入到一个30毫米长的介质内衬波导中,并将一个20周期太赫兹脉冲的频率调谐到相速度匹配值,在束流能量展宽基本不变的情况下,实现了近100%的电子的精确且持续的加速。此外,通过精确控制两个太赫兹脉冲的相位,束流在两个介质波导中以接近100%的电荷耦合效率相继被稳定加速。我们的结果展示了在多级微型加速器中稳定且可扩展的束流加速,并为实用的太赫兹驱动高能加速器铺平了道路。