Zhao Zhexin, Leedle Kenneth J, Black Dylan S, Solgaard Olav, Byer Robert L, Fan Shanhui
Ginzton Laboratory, Stanford University, Stanford, California 94305, USA.
Phys Rev Lett. 2021 Oct 15;127(16):164802. doi: 10.1103/PhysRevLett.127.164802.
Compressing electron pulses is important in many applications of electron beam systems. In this study, we propose to use optical beat notes to compress electron pulses. The beat frequency is chosen to match the initial electron pulse duration, which enables the compression of electron pulses with a wide range of durations. This functionality extends the optical control of electron beams, which is important in compact electron beam systems such as dielectric laser accelerators. We also find that the dominant frequency of the electron charge density changes continuously along its drift trajectory, which may open up new opportunities in coherent interaction between free electrons and quantum or classical systems.
压缩电子脉冲在电子束系统的许多应用中都很重要。在本研究中,我们提议使用光拍频来压缩电子脉冲。选择拍频以匹配初始电子脉冲持续时间,这使得能够压缩具有广泛持续时间的电子脉冲。此功能扩展了电子束的光学控制,这在诸如介质激光加速器等紧凑型电子束系统中很重要。我们还发现,电子电荷密度的主导频率沿其漂移轨迹连续变化,这可能为自由电子与量子或经典系统之间的相干相互作用开辟新的机会。