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在改进的离子束溅射工艺的引导过程中的空间分离效应。

Spatial separation effects in a guiding procedure in a modified ion-beam-sputtering process.

作者信息

Malobabic Sina, Jupé Marco, Ristau Detlev

机构信息

Laser Zentrum Hannover e.V., Hollerithallee 8, D-30419 Hannover, Germany.

QUEST: Centre for Quantum Engineering and Space-Time Research, Leibniz Universität Hannover, Hannover, Germany.

出版信息

Light Sci Appl. 2016 Mar 11;5(3):e16044. doi: 10.1038/lsa.2016.44. eCollection 2016 Mar.

Abstract

In the present state of the art, ion beam sputtering is used to produce low-loss dielectric optics. During the manufacturing of a dielectric layer stack, the deposition material must be changed, which requires rapid mechanical movement of vacuum components. These mechanical components can be regarded as a risk factor for contamination during the coating process, which limits the quality of high-end laser components. To minimize the particle contamination, we present a novel deposition concept that does not require movable components to change the coating material during the coating process. A magnetic field guiding technique has been developed, which enables the tuning of the refractive index in the layer structure by sputtering mixtures with varying compositions of two materials using a single-ion source. The versatility of this new concept is demonstrated for a high-reflection mirror.

摘要

在当前的技术水平下,离子束溅射被用于制造低损耗介电光学器件。在介电层堆叠的制造过程中,必须更换沉积材料,这需要真空部件进行快速机械移动。这些机械部件可被视为镀膜过程中污染的一个风险因素,这限制了高端激光部件的质量。为了将颗粒污染降至最低,我们提出了一种新颖的沉积概念,即在镀膜过程中无需移动部件来更换镀膜材料。我们开发了一种磁场引导技术,该技术能够通过使用单离子源溅射两种材料组成不同的混合物来调整层结构中的折射率。这种新概念的通用性在一个高反射镜上得到了验证。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7343/6059896/fa709a68d636/lsa201644f1.jpg

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