首页> 外文会议>Society of Photo-Optical Instrumentation Engineers Conference on High-Resolution Wavefront Control : Methods, Devices and Applications >Sub-millisecond phase contrast wavefront sensor based on an optically addressed ferroelectric liquid crystal spatial light modulator
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Sub-millisecond phase contrast wavefront sensor based on an optically addressed ferroelectric liquid crystal spatial light modulator

机译:基于光学寻址的铁电液晶空间光调制器的子毫秒相位对比度波前传感器

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A sub-millisecond wavefront sensor based on a non-linear Zernike filter is described. The sensor's key element is an optically addressed spatial light modulator (OASLM). The OASLM is composed of ferroelectric liquid crystal and an amorphous silicon carbide photo-conducting film. The OASLM is placed into the focal plane of a Fourier filtering system. The sensor operates with circularly polarized input light. For the high intensity (zero order) spectral component the deviation of the ferroelectric liquid crystal director by π/4 (45°) results in a π/2 phase shift. This provides wavefront phase distortion visualization similar to a conventional Zernike filter. The registered characteristic response time of the sensor is near 0.2ms for light intensity on the order of 100nw.
机译:描述了基于非线性Zernike滤波器的子毫秒波前传感器。传感器的关键元件是光学寻址的空间光调制器(OASLM)。 OASLM由铁电液晶和非晶碳化硅光导膜组成。将OASLM放入傅里叶滤波系统的焦平面。传感器以圆偏振输入光运行。对于高强度(零级)光谱分量,铁电液晶导向器在π/ 4(45°)的偏差导致π/ 2相移。这提供了类似于传统的Zernike滤波器的波前相失真可视化。传感器的注册特性响应时间接近0.2ms,用于电力强度为100nW的光强度。

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