Enabling rotary atomic layer deposition for optical applications

原子层沉积 材料科学 涂层 沉积(地质) 图层(电子) 光学涂层 吸收(声学) 旋转(数学) 光学 纳米技术 光电子学 复合材料 计算机科学 人工智能 古生物学 物理 生物 沉积物
作者
Leif Kochanneck,John Rönn,Andreas Tewes,Gerd-Albert Hoffmann,Sauli Virtanen,Philipp Maydannik,Sami Sneck,Andreas Wienke,Detlev Ristau
出处
期刊:Applied optics-OT [Optica Publishing Group]
卷期号:62 (12): 3112-3112 被引量:2
标识
DOI:10.1364/ao.477448
摘要

Atomic layer deposition (ALD) has been proven as an excellent method for depositing high-quality optical coatings due to its outstanding film quality and precise process control. Unfortunately, batch ALD requires time-consuming purge steps, which leads to low deposition rates and highly time-intensive processes for complex multilayer coatings. Recently, rotary ALD has been proposed for optical applications. In this, to the best of our knowledge, novel concept, each process step takes place in a separate part of the reactor divided by pressure and nitrogen curtains. To be coated, substrates are rotated through these zones. During each rotation, an ALD cycle is completed, and the deposition rate depends primarily on the rotation speed. In this work, the performance of a novel rotary ALD coating tool for optical applications is investigated and characterized with SiO2 and Ta2O5 layers. Low absorption levels of <3.1ppm and <6.0ppm are demonstrated at 1064 nm for around 186.2 nm thick single layers of Ta2O5 and 1032 nm SiO2, respectively. Growth rates up to 0.18 nm/s on fused silica substrates were achieved. Furthermore, excellent non-uniformity is also demonstrated, with values reaching as low as ±0.53% and ±1.07% over an area of 135×60mm for Ta2O5 and SiO2, respectively.
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