Increased intensity of interference fringes in Digital Holography

Y. F. López-Álvarez, F. G. Peña-Lecona, Ricardo Jara-Ruíz, J. E. Herrera-Serrano
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Abstract

Digital holographic interferometry is a full field optical technique, used in the measurement of dynamic and non-contact events, this technique works with arrays where the initial acquisition of interference fringes is not necessary, but rather involves the superposition of two wave fronts. Where from the holograms and by means of a Fourier window-based processing it is feasible to recover the information of both intensity and phase. However, the interference fringes resulting from the demodulation of the holograms may have low intensity, affecting their subsequent analysis. In this work, the combination of the holographic techniques, filters and the superposition principle is proposed to increase the intensity of the fringes, the results show that using the Fourier method in combination with the superposition theorem is possible to obtain greater intensity between the minimum and maximum of the fringes.
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数字全息术中干涉条纹强度增加
数字全息干涉测量是一种全场光学技术,用于测量动态和非接触事件,该技术适用于不需要初始采集干涉条纹的阵列,而是涉及两个波前的叠加。利用基于傅立叶窗的处理方法,从全息图中恢复光强和相位信息是可行的。然而,由于全息图解调产生的干涉条纹可能具有低强度,影响其后续分析。本文提出了将全息技术、滤光片和叠加原理相结合的方法来提高条纹的强度,结果表明,利用傅立叶方法结合叠加定理,可以在条纹的最小值和最大值之间获得更大的强度。
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