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Scanning Wavefront Sensor for Measurement of Highly Divergent Wavefronts

机译:扫描波前传感器,用于测量高度发散的波前

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This paper deals with the characterization of freeform optics by means of a wavefront sensor. Freeform optics show an increasing demand since they have the potential to improve optical system performance while reducing size, weight and complexity. To directly measure the performance of a freeform optical part, a novel scanning wavefront sensor approach is proposed which is faster than a coordinate measuring machine and more flexible than an interferometer. The challenges lie in the limited dynamic range of a Shack-Hartmann sensor concerning wavefront slope and curvature. Both limits can be overcome by repositioning the sensor and orienting it tangentially to the wavefront. An automatic setup is developed and first measurements are demonstrated on a highly divergent wavefront. It is shown that the dynamic range of the sensor is increased by scanning the sensor along the wavefront and orienting the sensor tangential to the wavefront in each position. Measurements are taken over a range of ±15°, which is an improvement by a factor 5 compared to the typical dynamic range of ±3° for a static Shack-Hartmann sensor.
机译:本文通过波前传感器涉及自由形式光学元件的表征。 Freeform光学器件显示出不断增长的需求,因为它们有可能提高光学系统性能,同时降低尺寸,重量和复杂性。为了直接测量自由形态光学部分的性能,提出了一种新颖的扫描波前传感器方法,其比坐标测量机更快,而不是干涉仪。挑战位于关于波前倾斜和曲率的Shack-Hartmann传感器的有限动态范围。通过重新定位传感器并向波前方向定向,可以克服两个限制。开发自动设置,并在高度发散的波前进行首次测量。结果表明,通过沿波前沿扫描传感器并向每个位置的波前定向传感器来增加传感器的动态范围。在±15°的范围内采用测量值,而静态卸架 - Hartmann传感器的典型动态范围比±3°的典型动态范围相比,该系数5的改善。

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