光学
衍射
校准
相(物质)
基点
菲涅耳衍射
光强度
空间光调制器
干涉测量
光电二极管
焦距
二进制数
物理
数学
镜头(地质)
量子力学
算术
作者
Omel Mendoza‐Yero,Gladys Mı́nguez-Vega,Lluis Martínez-León,Miguel Carbonell-Leal,M. Fernandez Alonso,Carlos Doñate‐Buendía,J. Pérez-Vizcaíno,Jesús Láncis
标识
DOI:10.1109/jdt.2016.2580902
摘要
We propose a simple and robust method to determine the calibration function of phase-only spatial light modulators (SLMs). The proposed method is based on the codification of binary phase Fresnel lenses (BPFLs) onto an SLM. At the principal focal plane of a BPFL, the focal irradiance is collected with a single device just able to measure intensity-dependent signals, e.g., CCD camera, photodiodes, power meter, etc. In accordance with the theoretical model, it is easy to extract the desired calibration function from the numerical processing of the experimental data. The lack of an interferometric optical arrangement, and the use of minimal optical components allow a fast alignment of the setup, which is in fact poorly dependent on environmental fluctuations. In addition, the effects of the zero-order, commonly presented in the diffraction-based methods, are drastically reduced because measurements are carried out only in the vicinity of the focal points, where main light contributions are coming from diffracted light at the BPFL. Furthermore, owing to the simplicity of the method, full calibration can be done, in most practical situations, without moving the SLM from the original place for a given application.
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