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首页> 外文期刊>Astronomy and astrophysics >Physical vapor deposition synthesis of amorphous silicate layers and nanostructures as cosmic dust analogs
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Physical vapor deposition synthesis of amorphous silicate layers and nanostructures as cosmic dust analogs

机译:物理气相沉积法合成无定形硅酸盐层和纳米结构作为宇宙尘埃类似物

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Cosmic dust grains (CD) are part of the evolution of stars and planetary systems and pervade the interstellar medium. Thus, their spectral signature may be used to deduce the physical features of the observed astronomical objects or to study many physical and chemical processes in the interstellar medium. However, CD samples are available only from sample-and-return space missions. Thus, they are rare and not sufficient to be used to perform laboratory experiments of astrophysical interest, such as to produce reference spectra. In this contribution, we describe a new physical vapor deposition (PVD) technique that allows the production of amorphous samples with controlled chemical and morphological characteristics. In particular, this technique was developed to grow uniform or microstructured layers of Mg-Fe amorphous silicates (olivine or pyroxene) that are materials of wide interest for laboratory experiments. We discuss the first results that were achieved by applying this new synthesis method. The layers were studied by combining infrared spectroscopy, scanning electron microscopy, and X-ray spectroscopy. The X-ray microscopy was used for the first time to characterize the internal structure of the grains in these synthetic samples. Finally, future improvements of the technique and foreseen applications are discussed.
机译:宇宙尘埃颗粒(CD)是恒星和行星系统演化的一部分,并遍及星际介质。因此,它们的光谱特征可用于推论观测到的天文物体的物理特征或研究星际介质中的许多物理和化学过程。但是,CD样本仅可从采样和返回太空任务获得。因此,它们很少见,不足以用于进行天体物理学感兴趣的实验室实验,例如生成参考光谱。在这项贡献中,我们描述了一种新的物理气相沉积(PVD)技术,该技术允许生产具有受控化学和形态特征的无定形样品。特别地,开发了该技术以生长均匀的或微结构化的Mg-Fe非晶硅酸盐(橄榄石或辉石),这是实验室实验中广泛关注的材料。我们讨论了通过应用这种新的合成方法获得的第一个结果。通过结合红外光谱,扫描电子显微镜和X射线光谱来研究这些层。首次使用X射线显微镜表征了这些合成样品中晶粒的内部结构。最后,讨论了该技术的未来改进和可预见的应用。

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