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Gamma-ray generation using laser-accelerated electron beam

机译:使用激光加速电子束产生伽马射线

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摘要

A compact gamma-ray source using laser-accelerated electron beam is being under development at KAERI for nuclear applications, such as, radiography, nuclear activation, photonuclear reaction, and so on. One of two different schemes, Bremsstrahlung radiation and Compton backscattering, may be selected depending on the required specification of photons and/or the energy of electron beams. Compton backscattered gamma-ray source is tunable and quasimonochromatic and requires electron beams with its energy of higher than 100 MeV to produced MeV photons. Bremsstrahlung radiation can generate high energy photons with 20 - 30 MeV electron beams, but its spectrum is continuous. As we know, laser accelerators are good for compact size due to localized shielding at the expense of low average flux, while linear RF accelerators are good for high average flux. We present the design issues for a compact gamma-ray source at KAERI, via either Bremsstrahlung radiation or Compton backscattering, using laser accelerated electron beams for the potential nuclear applications
机译:KAERI正在开发一种使用激光加速电子束的紧凑型伽马射线源,用于放射成像,核活化,光核反应等核应用。可以根据所需的光子规格和/或电子束能量来选择Bre致辐射辐射和康普顿背向散射两种不同方案之一。康普顿背散射伽马射线源是可调的和准单色的,需要能量大于100 MeV的电子束才能产生MeV光子。 ms致辐射可以用20-30 MeV电子束产生高能光子,但其光谱是连续的。众所周知,激光加速器由于局部屏蔽而有利于紧凑的尺寸,但以平均通量较低为代价,而线性RF加速器则适用于高平均通量。我们通过Bre致辐射辐射或康普顿背向散射(使用激光加速电子束用于潜在核应用)展示了在KAERI的紧凑型伽玛射线源的设计问题

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