带电粒子束的光电探测

Y. Semertzidis, V. Castillo, R. Larsen, D. M. Lazatus, B. Magurno, T. Srinivasan-Rao, T. Tsang, V. Usack, L. Kowalski, D. E. Kraus
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引用次数: 3

摘要

在布鲁克海文国家实验室加速器测试设备上,我们首次观察到带电粒子束对激光在双折射晶体中传播的电光效应。偏振红外光通过直径为4微米的保偏光纤耦合到LiNbO/ sub3 /晶体上。在晶体上扫描直径为1mm的10 ps束的电子束。利用带宽为45 GHz的光电二极管,观察了激光在电子束通过过程中的调制。测量到的最快上升时间为120ps,是在单镜头模式下完成的,受示波器和相关电子设备带宽的限制。极化依赖效应和极化非依赖效应都被观察到。这项技术有望大大提高带电粒子束的空间和时间分辨率。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Electro-optical detection of charged particle beams
We have made the first observation of a charged particle beam by means of its electro-optical effect on the propagation of laser light in a birefringent crystal at the Brookhaven National Laboratory Accelerator Test Facility. Polarized infrared light was coupled to a LiNbO/sub 3/ crystal through a polarization maintaining fiber of 4 micron diameter. An electron beam in 10 ps bunches of 1 mm diameter was scanned across the crystal. The modulation of the laser light during passage of the electron beam was observed using a photodiode with 45 GHz bandwidth. The fastest rise time measured, 120 ps, was made in the single shot mode and was limited by the bandwidth of the oscilloscope and the associated electronics. Both polarization dependent and polarization independent effects were observed. This technology holds promise of greatly improved spatial and temporal resolution of charged particle beams.
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