Deformation Direction and Curvature Control of Multilayer Thin Films Produced by Sputtering

Ikeda Ryota, Mori Osamu, Satoh Yasutaka, Sugawara Yoshiki
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Abstract

IKAROS, a solar sail spacecraft launched in 2010, demonstrated that thin-film solar cells can generate electricity. During this demonstration, it was found that the cells became curved, which destabilized the attitude of the spacecraft. Therefore, this study focused on a sputtering deposition technique that generates internal stress during the formation of thin films. The objective of this study was to control the curvature of a multilayer film by sputtering with a pattern. The effect of sputtering on the thin film was analyzed through experiments and simulations, and it was clarified that the cause of shape non-reproducibility is sputtering-induced stress.
溅射制备多层薄膜的变形方向和曲率控制
2010年发射的太阳帆宇宙飞船IKAROS证明了薄膜太阳能电池可以发电。在演示过程中,发现电池变得弯曲,这使航天器的姿态不稳定。因此,本研究的重点是在薄膜形成过程中产生内应力的溅射沉积技术。本研究的目的是通过溅射模式来控制多层膜的曲率。通过实验和模拟分析了溅射对薄膜的影响,明确了造成薄膜形状不可再现的原因是溅射引起的应力。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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