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Acousto-optic tunable filters (AOTFs) optimised for operation in the 2-4μm region

机译:声光可调谐滤波器(aOTF)针对2-4μm区域的操作进行了优化

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摘要

Acousto-Optic Tunable Filters (AOTFs) are electronically-controlled bandpass optical filters. They are often preferred in applications in spectroscopy where their agility and rapid random-access tuning can be deployed to advantage. When used for spectral imaging a large aperture (typically 10mm or more) is desired in order to permit sufficient optical throughput. However, in the mid IR the λ2 dependence on RF drive power combined with the large aperture can prove to be a hurdle, often making them impractical for many applications beyond about 2μm. We describe and compare a series of specialised free-space configurations of AOTF made from single crystal tellurium dioxide, that require relatively low RF drive power. We report on AOTFs specifically optimised for operation with a new generation of Supercontinuum source operating in the 2-4μm window and show how these may be used in a spectral imaging system. Finally, we describe an AOTF with an (acoustic) Fabry-Perot cavity operating at acoustic resonance rather than the conventional travelling-wave mode; the acoustic power requirement therefore being reduced. We present an analysis of the predicted performance. In addition, we address the practical issues in deploying such a scheme and outline the design of a prototype "resonant AOTF" operating in the 1-2μm region.
机译:声光可调滤光片(AOTF)是电子控制的带通滤光片。它们通常在光谱应用中是首选,因为它们的敏捷性和快速的随机访问调整可被利用。当用于光谱成像时,为了允许足够的光通量,需要大的孔径(通常为10mm或更大)。然而,在中红外波段,λ2对射频驱动功率的依赖性以及大孔径被证明是一个障碍,通常使它们在超过2μm的许多应用中不切实际。我们描述并比较了由单晶二氧化碲制成的一系列特殊的AOTF自由空间配置,这些配置需要相对较低的RF驱动功率。我们报告了专门针对在2-4μm窗口中运行的新一代Supercontinuum光源进行优化操作的AOTF,并展示了如何在光谱成像系统中使用它们。最后,我们描述了一种具有声共振法布里-珀罗腔的AOTF,该腔在声共振而不是传统的行波模式下工作。因此,降低了声功率要求。我们对预测的性能进行分析。此外,我们解决了部署这种方案时的实际问题,并概述了工作在1-2μm区域的原型“谐振AOTF”的设计。

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