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Real-time thermomechanical property monitoring during ion beam irradiation using in situ transient grating spectroscopy

机译:使用原位瞬态光栅光谱技术实时监测离子束辐照过程中的热机械性能

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摘要

A facility for continuously monitoring the thermal and elastic performance of materials under exposure to ion beam irradiation has been designed and commissioned. By coupling an all-optical, non-contact, non-destructive measurement technique known as transient grating spectroscopy (TGS) to a 6 MV tandem ion accelerator, bulk material properties may be measured at high fidelity as a function of irradiation exposure and temperature. Ion beam energies and optical parameters may be tuned to ensure that only the properties of the ion-implanted surface layer are interrogated. This facility provides complementary capabilities to the set of facilities worldwide which have the ability to study the evolution of microstructure in situ during radiation exposure, but lack the ability to measure bulk-like properties. Here, the measurement physics of TGS, design of the experimental facility, and initial results using both light and heavy ion exposures are described. Finally, several short- and long-term upgrades are discussed which will further increase the capabilities of this diagnostic.
机译:已经设计并调试了用于连续监测暴露于离子束辐照下的材料的热和弹性性能的设备。通过将称为瞬态光栅光谱法(TGS)的全光学,非接触式,非破坏性测量技术与6 MV串联离子加速器相结合,可以以高保真度测量散装材料的性能,具体取决于辐射暴露和温度。可以调整离子束能量和光学参数,以确保仅询问离子注入表面层的特性。该设施为全球范围内的设施提供了补充功能,这些设施具有研究辐射暴露过程中原位微观结构演变的能力,但缺乏测量类似块状物的性能的能力。在此,将介绍TGS的测量物理原理,实验设备的设计以及使用轻离子和重离子暴露的初步结果。最后,讨论了一些短期和长期升级,这些升级将进一步提高此诊断的功能。

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