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将毛细管光学器件用作康普顿X射线源的光束增强器。

Use of capillary optics as a beam intensifier for a Compton x-ray source.

作者信息

Tompkins P A, Abreu C C, Carroll F E, Xiao Q F, MacDonald C A

机构信息

Department of Physics and Astronomy, Vanderbilt University, Nashville, Tennessee.

出版信息

Med Phys. 1994 Nov;21(11):1777-84. doi: 10.1118/1.597218.

Abstract

The use of Kumakhov capillary optics will significantly enhance the performance of near-monochromatic, Compton backscattered x-ray programs. The Vanderbilt University Medical Free-Electron Laser Center is developing the capability to create these tunable x rays for medical imaging. The present transport has only reflection optics, and the beam is quite large in diameter at the laboratory. Low loss collimation of this beam would allow higher x-ray intensities after transport. This article describes experimental and computer simulation results which predict the expected performance for a multifiber Kumakhov collimator for use in the x-ray beam transport. Estimates from our research are that a multifiber optic formed of individual polycapillary fibers could be used to capture the full 7 mrad of the Vanderbilt x-ray beam and collimate it to a 1-2 mrad divergence with approximately 40%-50% transmission efficiency. This optic should increase the x-ray intensity at the laboratory level by a factor of > or = 5 by decreasing the beam divergence and subsequent spot size. Additionally, analysis of monolithic optics of fused multicapillary fibers predicts an increase in the intensity of the x rays at the laboratory by a factor of 55. These optics can have tapered channels that greatly decrease their exit divergence. This will greatly enhance the capabilities of this unique x-ray source. This article reports the initial results from a collaboration between Vanderbilt, The Center for X-Ray Optics at University at Albany, SUNY, and X-Ray Optical Systems in Albany, NY.

摘要

库马霍夫毛细管光学器件的应用将显著提升近单色康普顿背散射X射线程序的性能。范德比尔特大学医学自由电子激光中心正在开发为医学成像生成这些可调谐X射线的能力。目前的传输系统仅采用反射光学器件,且在实验室中光束直径相当大。对该光束进行低损耗准直将使传输后的X射线强度更高。本文描述了实验和计算机模拟结果,这些结果预测了用于X射线束传输的多纤维库马霍夫准直器的预期性能。我们的研究估计,由单个多毛细管纤维构成的多纤维光学器件可用于捕获范德比尔特X射线束的全部7毫弧度,并将其准直到1 - 2毫弧度的发散角,传输效率约为40% - 50%。这种光学器件通过减小光束发散角和后续光斑尺寸,应能使实验室水平的X射线强度提高≥5倍。此外,对熔融多毛细管纤维的整体光学器件的分析预测,实验室中X射线强度将提高55倍。这些光学器件可具有锥形通道以大幅减小其出射发散角。这将极大地增强这种独特X射线源的能力。本文报道了范德比尔特大学、纽约州立大学奥尔巴尼分校的X射线光学中心以及纽约州奥尔巴尼的X射线光学系统公司之间合作的初步结果。

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