Carroll F E, Waters J W, Price R R, Brau C A, Roos C F, Tolk N H, Pickens D R, Stephens W H
Department of Radiology and Radiological Sciences, Vanderbilt University Medical Center, Nashville, TN.
Invest Radiol. 1990 May;25(5):465-71. doi: 10.1097/00004424-199005000-00001.
The intense photon output of a free electron laser may be made to collide with its own high energy electron beam to create nearly monochromatic x-rays using Compton backscatter techniques. These x-rays can be used for imaging and non-imaging diagnostic and therapeutic experiments. The initial configuration of the Vanderbilt Medical Free Electron Laser (Sierra Laser Systems, Sunnyvale, CA) produces intense x-rays up to 17.9 keV, although higher energies are easily attainable through the use of frequency doubling methods, alteration of the energy of the electron beam and coupling to conventional laser inputs.
自由电子激光的高强度光子输出可通过康普顿背散射技术使其与自身的高能电子束碰撞,以产生近乎单色的X射线。这些X射线可用于成像以及非成像诊断和治疗实验。范德比尔特医学自由电子激光(加利福尼亚州森尼韦尔市的塞拉激光系统公司)的初始配置可产生高达17.9keV的高强度X射线,不过通过使用倍频方法、改变电子束能量以及与传统激光输入耦合,更高的能量很容易实现。