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TWO-WAVELENGTH DYNAMIC HOLOGRAPHY AND ITS APPLICATION IN ADAPTIVE OPTICS

机译:二波长动态全息技术及其在自适应光学中的应用

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Two-wavelength holography, when the hologram is recorded at one wavelength and reconstructed at some shifted wavelength, is an efficient tool for many applications. Optically addressed liquid crystal spatial light modulators are very convenient for recording thin dynamic holograms and, in particular, for the purposes of the dynamic two-wavelength holography. On such a basis one can realise the dynamic interferometer, providing the arbitrary scaling of the wave front distortions. Such an interferometer can be of use for solution of some of the tasks of the adaptive optics, namely, for simplification of the procedure of measuring of the robust wavefront distortions, for recording of the dynamic holographic correctors, working in spectral ranges, where the direct holographic record is impossible, in particular, in mid-IR range of spectrum, and for extension of the range of distortions, which can be corrected by means of the phase valve, mounted in the negative optical feedback loop. We report the experimental realisation of such an interferometer.
机译:当在一个波长下记录全息图并在某个偏移波长下重构全息图时,两波长全息图是许多应用的有效工具。光学寻址的液晶空间光调制器对于记录薄的动态全息图非常方便,特别是对于动态两波长全息图而言。在这样的基础上,可以实现动态干涉仪,提供波阵面畸变的任意缩放。这种干涉仪可用于解决自适应光学器件的某些任务,即,简化鲁棒波前畸变的测量程序,记录动态全息校正器,在光谱范围内工作,其中直接全息记录是不可能的,特别是在光谱的中红外范围内,并且对于畸变范围的扩展是不可能的,这可以通过安装在负光反馈回路中的相位阀进行校正。我们报告了这种干涉仪的实验实现。

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