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Epitaxial Silver Films Morphology and Optical Properties Evolution over Two Years

机译:外延银膜形态和光学性质进化两年

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Silver and gold are the most commonly used materials in optics and plasmonics. Silver has the lowest optical losses in the visible and near-infrared wavelength range, but it faces a serious problem—degradation over time. It has been repeatedly reported that the optical properties of silver thin films rapidly degrade when exposed to the atmosphere. This phenomenon was described by various mechanisms: rapid silver oxidation, sorption of sulfur or oxygen, formation of silver compounds with chlorine, sulfur, and oxygen. In this work, we systematically studied single-crystalline silver films from 25 to 70 nm thicknesses for almost two years. The surface morphology, crystalline structure and optical characteristics of the silver films were measured using spectroscopic ellipsometry, ultra-high-resolution scanning electron microscopy, and stylus profilometry under standard laboratory conditions. After 19 months, bulk structures appeared on the surface of thin films. These structures are associated with relaxation of internal stresses combined with dewetting. Single-crystalline silver films deposited using the single-crystalline continuous ultra-smooth, low-loss, low-cost (SCULL) technology with a thickness of 35–50 nm demonstrated the best stability in terms of degradation. We have shown that the number of defects (grain boundaries and joints of terraces) is one of the key factors that influence the degradation intensity of silver films.
机译:银色和金色是光学和血浆中最常用的材料。银具有可见光和近红外波长范围内的最低光学损耗,但它面临严重的问题 - 随着时间的推移。已经反复报道,在暴露于大气时,银薄膜的光学性质迅速降解。这种现象由各种机制描述:快速银氧化,硫或氧气吸附,用氯,硫和氧形成银化合物。在这项工作中,我们系统地研究了25至70 nm厚度的单晶银膜近两年。在标准实验室条件下,使用光谱椭圆形测定法,超高分辨率扫描电子显微镜和触针轮廓测量银膜的表面形态,结晶结构和光学特性。 19个月后,散装结构出现在薄膜的表面上。这些结构与内部应力的松弛相关,联合脱水。使用厚度为35-50nm的单晶连续超光滑,低损耗,低成本(桨壳)技术沉积的单晶银薄膜在降解方面证明了最佳稳定性。我们已经表明,缺陷数量(谷物边界和露台关节)是影响银膜的降解强度的关键因素之一。
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