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Tailoring properties of lossy-mode resonance optical fiber sensors with atomic layer deposition technique

机译:具有原子层沉积技术的损坏模式谐振光纤传感器的剪裁性能

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摘要

The paper shows application of atomic layer deposition (ALD) technique as a tool for tailoring sensorial properties of lossy-mode-resonance (LMR)-based optical fiber sensors. Hafnium dioxide (HfO2), zirconium dioxide (ZrO2), and tantalum oxide (TaxOy), as high-refractive-index dielectrics that are particularly convenient for LMR-sensor fabrication, were deposited by low-temperature (100 degrees C) ALD ensuring safe conditions for thermally vulnerable fibers. Applicability of HfO2 and ZrO2 overlays, deposited with ALD-related atomic level thickness accuracy for fabrication of LMR-sensors with controlled sensorial properties was presented. Additionally, for the first time according to our best knowledge, the double layer overlay composed of two different materials -silicon nitride (SixNy) and TaxOy-is presented for the LMR fiber sensors. The thin films of such overlay were deposited by two different techniques PECVD (the SixNy) and ALD (the TaxOy). Such approach ensures fast overlay fabrication and at the same time facility for resonant wavelength tuning, yielding devices with satisfactory sensorial properties. (C) 2018 Elsevier Ltd. All rights reserved.
机译:本文示出了原子层沉积(ALD)技术作为用于剪裁有损模式 - 谐振(LMR)的光纤传感器的感觉性能的工具。通过低温(100摄氏度)沉积,二氧化铪(ZrO2),二氧化锆(ZrO2)和钽氧化物(ZrO2)和钽氧化物(ZrO2)和钽氧化物(禽胶),特别是对LMR传感器制造的高折射率电介质沉积,确保安全热脆弱纤维的条件。呈现了HFO2和ZrO2覆盖的适用性,沉积有铝相关原子水平厚度精度,用于制造具有受控感觉性质的LMR传感器。此外,由于我们的最佳知识首次,为LMR光纤传感器提出了由两种不同的氮化物(六卷)和罗米胶组成的双层覆盖层。通过两种不同的技术PECVD(六卷)和ALD(绳索)沉积这种覆盖层的薄膜。这种方法确保快速覆盖制造,并且在同一时间设施进行谐振波长调谐,产生具有令人满意的感觉特性的装置。 (c)2018年elestvier有限公司保留所有权利。

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