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首页> 外文期刊>International Journal of Modern Physics, A. Particles and Fields, Gravitation, Cosmology >MEDICAL APPLICATION OF MULTI-BEAM COMPTON SCATTERING MONOCHROMATIC TUNABLE HARD X-RAY SOURCE
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MEDICAL APPLICATION OF MULTI-BEAM COMPTON SCATTERING MONOCHROMATIC TUNABLE HARD X-RAY SOURCE

机译:多光束康普顿散射单色可调谐硬X射线源的医学应用

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摘要

Compton scattering hard X-ray source which consists of an X-band (11.424 GHz) electron linear accelerator and YAG laser is under construction at Nuclear Professional School, the University of Tokyo. Monochromatic hard X-rays are required for variety of medical and biological applications. Our scheme of the hard X-ray source is to produce a monochromatic hard X-ray via collision between 35 MeV electron beam and 2.5 J/10 nsec Nd:YAG laser. In order to increase the efficiency of the X-ray yield, we adopt a laser pulse circulation system. In our case, the laser pulse circulation system can increase the X-ray intensity of up to 10 times. Main features of our scheme are to produce monochromatic tunable hard (10-40 keV) X-rays with the intensities of 108-109 photons/sec. In addition, X-ray energy can be changed with rapidly by 40 ms by introducing two different wavelength lasers (YAG fundamental (1064 nm), 2nd harmonic (532 nm)) and optical switch. This quick energy change is indispensable to living specimens and very difficult by a large SR light source and others. Dual-energy X-ray CT and subtraction X-ray CT are available to determine 3D distribution of atomic number density and electron density, and specified atomic distribution, respectively. Here, the construction status of the X-band beam line and the application plan of the hard X-ray are described and discussed.
机译:由X波段(11.424 GHz)电子线性加速器和YAG激光器组成的康普顿散射硬X射线源正在东京大学核专业学校建造。各种医学和生物学应用都需要单色硬X射线。我们的硬X射线源方案是通过35 MeV电子束与2.5 J / 10 ns Nd:YAG激光之间的碰撞产生单色硬X射线。为了提高X射线发射效率,我们采用了激光脉冲循环系统。在我们的案例中,激光脉冲循环系统可以将X射线强度提高多达10倍。我们方案的主要特征是产生强度为108-109光子/秒的单色可调硬(10-40 keV)X射线。另外,通过引入两个不同波长的激光(YAG基波(1064 nm),二次谐波(532 nm))和光学开关,X射线能量可以快速改变40 ms。这种快速的能量变化对于活体标本是必不可少的,并且对于大型SR光源和其他光源来说非常困难。可使用双能X射线CT和减法X射线CT分别确定原子数密度和电子密度的3D分布以及指定的原子分布。这里,描述和讨论X波段束线的构造状态和硬X射线的应用计划。

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