Frantz Jesse A, Clabeau Anthony, Myers Jason D, Bekele Robel Y, Nguyen Vinh Q, Sanghera Jasbinder S
Opt Express. 2020 Nov 9;28(23):34744-34753. doi: 10.1364/OE.409531.
We present a method of post-deposition tuning of the optical properties of thin film dielectric filters and mirrors containing chalcogenide glass (ChG) layers by thermally adjusting their refractive index. A common challenge associated with the use of ChG films in practical applications is that they suffer from slight run-to-run variations in optical properties resulting from hard-to-control changes in source material and deposition conditions. These variations lead to inconsistencies in optical constants, making the fabrication of devices with prescribed optical properties challenging. In this paper, we present new work that takes advantage of the large variation of a ChG films' refractive index as a function of annealing. We have carried out extensive characterization of the thermal index tuning and thickness change of arsenic selenide (AsSe) ChG thin films and observed refractive index changes larger than 0.1 in some cases. We show results for refractive index as a function of annealing time and temperature and propose a model to describe this behavior based on bond rearrangement. We apply thermal refractive index tuning to permanently shift the resonance of a Fabry-Perot filter and the cutoff wavelength of a Bragg reflector. The Bragg reflector, consisting of alternating AsSe and CaF layers, exhibits high reflectance across a ∼550 nm band with only five layers. Modeling results are compared with spectroscopic measurements, demonstrating good agreement.
我们提出了一种通过热调节含硫系玻璃(ChG)层的薄膜介质滤波器和反射镜的折射率来对其光学特性进行沉积后调谐的方法。在实际应用中使用ChG薄膜存在一个常见挑战,即由于源材料和沉积条件难以控制的变化,它们的光学特性会出现轻微的批次间差异。这些差异导致光学常数不一致,使得制造具有规定光学特性的器件具有挑战性。在本文中,我们展示了利用ChG薄膜折射率随退火的大幅变化的新工作。我们对硒化砷(AsSe)ChG薄膜的热折射率调谐和厚度变化进行了广泛表征,在某些情况下观察到折射率变化大于0.1。我们展示了折射率随退火时间和温度的变化结果,并基于键重排提出了一个模型来描述这种行为。我们应用热折射率调谐来永久移动法布里 - 珀罗滤波器的共振峰和布拉格反射器的截止波长。由交替的AsSe和CaF层组成的布拉格反射器,仅用五层就在约550 nm波段表现出高反射率。将建模结果与光谱测量结果进行比较,显示出良好的一致性。