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Fabrication of Ultralow Stress TiO2/SiO2 Optical Coatings by Plasma Ion-Assisted Deposition

机译:通过等离子体离子辅助沉积制备超级应力TiO2 / SiO2光学涂层的制造

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Optical and mechanical properties of multilayer coatings depend on the selected layer materials and the deposition technology; therefore, knowledge of the performances of thin films is essential. In the present work, titanium dioxide (TiO2) and silicon dioxide (SiO2) thin films have been prepared by plasma ion-assisted deposition (PIAD). The optical, structural, and mechanical properties of thin films have been investigated using spectrometer/ellipsometer, X-ray diffraction (XRD), atomic force microscopy (AFM), and laser interferometer. The results show that TiO2 film fabricated by PIAD induces a high refractive index, wide optical band gap, amorphous structure, smooth surface, and tensile stress. In the case of SiO2 film, high bias voltage leads to dense structure and compressive stress. As an application, a three-wavelength high reflectance at 632.8, 808, and 1550 nm was optimized and deposited. The dependence of total stress in the multilayer on the substrate temperature was studied as well. In conclusion, it was demonstrated that PIAD is an effective method for the preparation of ultralow stress TiO2/SiO2 multilayer films. The achieved stress was as low as 1.4 MPa. The result could provide guidance to the stress optimization of most optical components without prefiguring, backside coating, and postdeposition treatments.
机译:多层涂层的光学和力学性能取决于所选择的层材料和沉积技术;因此,了解薄膜的性能至关重要。在本作工作中,通过等离子体离子辅助沉积(PIAD)制备二氧化钛(TiO 2)和二氧化硅(SiO 2)薄膜。使用光谱仪/椭圆仪,X射线衍射(XRD),原子力显微镜(AFM)和激光干涉仪研究了薄膜的光学,结构和机械性能。结果表明,PIAD制造的TiO2膜诱导高折射率,宽光带隙,非晶结构,光滑表面和拉伸应力。在SiO2膜的情况下,高偏压导致密集的结构和压缩应力。作为应用,优化并沉积在632.8,808和1550nm处的三波长高反射率。还研究了多层总应力对基板温度的依赖性。总之,证明PIAD是制备超级应激TiO2 / SiO2多层膜的有效方法。实现的应力低至1.4MPa。结果可以为大多数光学组件的应力优化提供指导,而无需预先预装,背面涂层和后沉积治疗。

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