Electron Cloud Density Measurements in Accelerator Beam-pipe Using Resonant Microwave Excitation
Abstract
An accelerator beam can generate low energy electrons in the beam-pipe, generally called electron cloud, that can produce instabilities in a positively charged beam. One method of measuring the electron cloud density is by coupling microwaves into and out of the beam-pipe and observing the response of the microwaves to the presence of the electron cloud. In the original technique, microwaves are transmitted through a section of beam-pipe and a change in EC density produces a change in the phase of the transmitted signal. This paper describes a variation on this technique in which the beam-pipe is resonantly excited with microwaves and the electron cloud density calculated from the change that it produces in the resonant frequency of the beam-pipe. The resonant technique has the advantage that measurements can be localized to sections of beam-pipe that are a meter or less in length with a greatly improved signal to noise ratio.
Keywords
Cite
@article{arxiv.1311.5633,
title = {Electron Cloud Density Measurements in Accelerator Beam-pipe Using Resonant Microwave Excitation},
author = {John P. Sikora and Benjamin T. Carlson and Danielle O. Duggins and Kenneth C. Hammond and Stefano De Santis and Alister J. Tencate},
journal= {arXiv preprint arXiv:1311.5633},
year = {2014}
}
Comments
10 pages, 10 figures, re-submitted to Nuclear Instruments and Methods in Physics Research A