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- W1971293829 abstract "The optical function generated by a real optical system differs typically from the simulation result. Differences arecaused for example by light source radiation tolerances, by alignment tolerances or deviations of the fabricatedsurfaces from ideal surfaces. In order to simulate the influence of surface deviations of a real system on theoptical function it is required to import surface measurement data into optics software. These measurementdata contain often the profile height at discrete data points. In order to do a simulation it is required toimport these data into optics software and to create a continuous surface profile with the help of a suitableinterpolation method. Surfaces deviations can have high spatial frequencies. This requires often a simulationof light propagation including diffraction, interference and vectorial effects. In general different models of lightpropagation are needed depending on the required physical simulation accuracy.The authors show the modelling of refractive, diffractive and hybrid surfaces from discrete data sets. It turnsout that for the description of these different surface types different interpolation methods are required to allowan efficient construction of a continuous surface from measurement data. In addition the authors introduce theField Tracing concept that allows using different light propagation models from geometrical optics to rigorous.It enables the adjustment of the physical modelling accuracy in every part of an optical system. The simulationof the effect of measured surface deviations will be demonstrated on the examples of a refractive beam shapingelement and of a diffraction grating. It will be shown that it is important to include diffraction and interferenceeffects in the simulation." @default.
- W1971293829 created "2016-06-24" @default.
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- W1971293829 date "2011-05-23" @default.
- W1971293829 modified "2023-09-23" @default.
- W1971293829 title "Physical optics light propagation through components with measured refractive, diffractive and hybrid surface profiles" @default.
- W1971293829 doi "https://doi.org/10.1117/12.889499" @default.
- W1971293829 hasPublicationYear "2011" @default.
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