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Analysis of gravitational effects on liquid lenses (ANGEL)

机译:液体镜片重力效应分析(天使)

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Liquid lenses have been developed as a means for fast and reliable variable-focus optics by using an adjustable curvaturein a liquid-liquid interface. The use of liquid lenses also provides the benefit of reducing the number of elements in asystem, and providing a degree of freedom without any moving parts. Different methods for surface curvature actuationhave been developed, including aperture adjustment, mechanical actuators, stimuli-responsive hydrogels, andmechanical-wetting. Current liquid lens designs are limited to small apertures (less than 4mm) and density-matchingfluids to lessen the negative effects of gravity. By creating a lens intended for use in a microgravity environment, theaperture size can be increased by orders of magnitude, and optimal fluids can be used regardless of their density. Using alarge-aperture (12mm) liquid lens, image and surface metrology was conducted using a fixed-focus configuration. TheSoftware Configurable Optical Test System (SCOTS) method was utilized to test the effect of microgravity, standardgravity, and hypergravity on the liquid lens during parabolic flights. Under standard gravity, the RMS wavefront error(WFE) was 27 wavelengths, while microgravity conditions allowed an improvement to 17 wavelengths RMS WFE. Testperformance can be improved by using lower viscosity fluids or longer duration microgravity flights. The experimentalso served as an engineering demonstration for the SCOTS method in an environment where other methods of opticalmetrology would be impossible.© (2012) COPYRIGHT Society of Photo-Optical Instrumentation Engineers (SPIE). Downloading of the abstract is permitted for personal use only.
机译:通过使用可调节的曲率液界面,已经开发了液体透镜作为快速可靠的可变聚焦光学器件的装置。使用液体透镜还提供了减少控制中的元素数量的益处,并提供无任何移动部件的自由度。已经开发了不同的表面曲率驱动方法,包括孔径调节,机械致动器,刺激响应水凝胶,机械润湿性。目前的液体透镜设计仅限于小孔(小于4mm)和密度匹配的氟,以减少重力的负面影响。通过创建用于微匍匐环境的镜头,可以通过数量级增加,尺寸增加,无论密度如何,都可以使用最佳流体。使用Alarge-孔径(12mm)液体透镜,使用固定聚焦配置进行图像和表面测量。 Chesoftware可配置的光学测试系统(苏格兰)方法用于测试抛物线飞行期间微匍匐,标准格和超高刻的效果。在标准重力下,RMS波前误差(WFE)是27个波长,而微匍匐条件允许改善17个波长RMS WFE。通过使用较低的粘度流体或更长的持续时间微匍匐飞行可以改善测试。实验声索担任苏格兰方法在一个环境中的苏格兰方法的工程演示,其中其他光学测量学的其他方法是不可能的。©(2012)照片光学仪表工程师的版权协会(SPIE)。仅供个人使用的摘要下载。

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