Istituto di Fotonica e Nanotecnologie , Consiglio Nazionale delle Ricerche , via Trasea 7 , 35131 Padova , Italy.
Dipartimento di Ingegneria dell'Informazione , Università degli Studi di Padova , via Gradenigo 6B , 35131 Padova , Italy.
ACS Appl Mater Interfaces. 2018 Oct 10;10(40):34781-34791. doi: 10.1021/acsami.8b13085. Epub 2018 Sep 26.
Future space missions will operate in increasingly hostile environments, such as those in low-perihelion solar orbits and Jovian magnetosphere. This exploration involves the selection of optical materials and components resistant to the environmental agents. The conditions in space are reproduced on ground through the use of ion accelerators. The effects of He particles coming from the solar wind impinging on a gold thin film have been systematically investigated, considering absorbed doses compatible with the duration of the European Space Agency Solar Orbiter mission. Structural and morphological changes have been proved to be dependent not only on the dose but also on the irradiation flux. A predictive model of the variation of thin film reflectance has been developed for the case of lower flux irradiation. The results are discussed regarding reliability and limitations of laboratory testing. The outcomes are important to address the procedures for the space qualification tests of optical coatings.
未来的太空任务将在越来越恶劣的环境中运行,例如在低近日点太阳轨道和木星磁层中。这种探索涉及到选择对环境因素具有抗性的光学材料和组件。通过使用离子加速器,可以在地面上再现太空环境。系统地研究了来自太阳风的 He 粒子撞击金薄膜的影响,考虑了与欧洲航天局太阳轨道器任务持续时间相兼容的吸收剂量。结构和形态的变化不仅取决于剂量,还取决于辐照通量。针对较低通量辐照的情况,开发了薄膜反射率变化的预测模型。讨论了这些结果在实验室测试的可靠性和局限性方面的意义。这些结果对于确定光学涂层的空间鉴定测试程序非常重要。