In-situ Optical Characterization of Noble Metal Thin Film Deposition and Development of a High-performance Plasmonic Sensor

David J. Mandia
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Abstract

The present work addressed in this thesis introduces, for the first time, the use of tilted fiber Bragg grating (TFBG) sensors for accurate, real-time, and in-situ characterization of CVD and ALD processes for noble metals, but with a particular focus on gold due to its desirable optical and plasmonic properties. Through the use of orthogonally-polarized transverse electric (TE) and transverse magnetic (TM) resonance modes imposed by a boundary condition at the cladding-metal interface of the optical fiber, polarization-dependent resonances excited by the TFBG are easily decoupled. It was found that for ultrathin thicknesses of gold films from CVD (~6-65 nm), the anisotropic property of these films made it non-trivial to characterize their effective optical properties such as the real component of the permittivity. Nevertheless, the TFBG introduces a new sensing platform to the ALD and CVD community for extremely sensitive in-situ process monitoring. We later also demonstrate thin film growth at low (<10 cycle) numbers for the well-known Al2O3 thermal ALD process, as well as the plasma-enhanced gold ALD process. Finally, the use of ALD-grown gold coatings has been employed for the development of a plasmonic TFBG-based sensor with ultimate refractometric sensitivity (~550 nm/RIU).
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贵金属薄膜沉积的原位光学表征及高性能等离子体传感器的研制
本文首次介绍了使用倾斜光纤布拉格光栅(TFBG)传感器对贵金属的CVD和ALD过程进行精确、实时和原位表征,但由于其理想的光学和等离子体特性,特别关注金。通过在光纤包层-金属界面处的边界条件施加的正交极化横向电(TE)和横向磁(TM)共振模式,可以很容易地解耦由TFBG激发的极化相关共振。研究发现,对于CVD制备的超薄金膜(~6 ~ 65 nm),其各向异性特性使得表征其介电常数实分量等有效光学性质变得非常重要。然而,TFBG为ALD和CVD社区引入了一种新的传感平台,用于极其敏感的原位过程监测。我们随后还展示了众所周知的Al2O3热ALD工艺以及等离子体增强金ALD工艺在低(<10循环)数下的薄膜生长。最后,利用ald生长的金涂层开发了一种具有极限折射灵敏度(~550 nm/RIU)的等离子体tfbg传感器。
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