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Refractive Waveguide Non-Mechanical Beam Steering (NMBS) in the MWIR

机译:MWIR中的折射波导非机械束转向(NMBS)

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Beam steering is a crucial technology for a number of applications, including chemical sensing/mapping and light detection and ranging (LIDAR). Traditional beam steering approaches rely on mechanical movement, such as the realignment of mirrors in gimbal mounts. The mechanical approach to steering has several drawbacks, including large size, weight and power usage (SWAP), and frequent mechanical failures. Recently, alternative non-mechanical approaches have been proposed and developed, but these technologies do not meet the demanding requirements for many beam steering applications. Here, we highlight the development efforts into a particular non-mechanical beam steering (NMBS) approach, refractive waveguides, for application in the MWIR. These waveguides are based on an Ulrich-coupled slab waveguide with a liquid crystal (LC) top cladding; by selectively applying an electric field across the liquid crystal through a prismatic electrode, steering is achieved by creating refraction at prismatic interfaces as light propagates through the device. For applications in the MWIR, we describe a versatile waveguide architecture based on chalcogenide glasses that have a wide range of refractive indices, transmission windows, and dispersion properties. We have further developed robust shadow-masking methods to taper the subcladding layers in the coupling region. We have demonstrated devices with >10° of steering in the MWIR and a number of advantageous properties for beam steering applications, including low-power operation, compact size, and fast point-to-point steering.
机译:对于许多应用,光束转向是一项关键技术,包括化学传感/映射以及光检测和测距(LIDAR)。传统的光束转向方法依赖于机械运动,例如在万向支架中调整镜子。机械转向的方法有几个缺点,包括尺寸大,重量大,动力消耗大(SWAP),以及频繁的机械故障。近来,已经提出并开发了替代性的非机械方法,但是这些技术不能满足许多​​光束转向应用的苛刻要求。在这里,我们重点介绍了在MWIR中应用到特定的非机械光束转向(NMBS)方法(折射波导)的开发工作。这些波导基于带有液晶(LC)顶部包层的Ulrich耦合平板波导。通过有选择地通过一个棱柱形电极在液晶上施加电场,通过在光传播通过器件时在棱柱形界面处产生折射来实现转向。对于MWIR中的应用,我们描述了一种基于硫族化物玻璃的通用波导架构,该结构具有广泛的折射率,透射窗和色散特性。我们进一步开发了鲁棒的阴影掩蔽方法,以使耦合区域中的子包层逐渐变细。我们已经展示了在MWIR中具有> 10°转向的设备,以及在光束转向应用中具有的许多有利特性,包括低功率运行,紧凑的尺寸和快速的点对点转向。

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