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ENERGY RECOVERY LINACS FOR COMMERCIAL RADIOISOTOPE PRODUCTION

机译:商业放射性同位素生产的能量回收直线加速器

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Photonuclear reactions with bremsstrahlung photon beams from electron linacs can generate radioisotopes of critical interest. An SRF Energy Recovery Linac (ERL) provides a path to a more diverse and reliable domestic supply of short-lived, high-value, high-demand isotopes in a more compact footprint and at a lower cost than those produced by conventional reactor or ion accelerator methods. Use of an ERL enables increased energy efficiency of the complex through energy recovery of the "waste" electron beam, high electron currents for high production yields, and reduced neutron production and shielding activation at beam dump components. Simulation studies using G4Beamline/GEANT4 and MCNP6 through MuSim, as well as other simulation codes, are being used to design an ERL-based isotope production facility utilizing bremsstrahlung photon beams from an electron linac. Key concepts of our approach include the use of a thin photon radiator, a focus on isotopes requiring high energy thresholds for photoproduction, and a novel approach to optical aberration corrections.
机译:来自电子直线加速器的致辐射光子束的光核反应可产生至关重要的放射性同位素。 SRF能量回收直线加速器(ERL)提供了一条途径,可以以比传统反应器或离子生产的更紧凑的占地面积和更低的成本,以更紧凑的占地面积和更低的成本向国内提供短寿命,高价值,高需求的同位素。加速器方法。 ERL的使用可通过“废”电子束的能量回收,高电子电流以实现高产量的方式提高复合物的能量效率,并减少中子产生并减少束流收集组件的活化。通过MuSim使用G4Beamline / GEANT4和MCNP6进行的仿真研究以及其他仿真代码,已被用于设计基于ERL的同位素生产设备,该设备利用了来自电子直线加速器的致发光光子束。我们方法的关键概念包括使用薄光子辐射器,关注需要高能量阈值才能进行光产生的同位素以及新颖的光学像差校正方法。

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