Paudel Hari P, Stockbridge Chris, Mertz Jerome, Bifano Thomas
Boston University Photonics Center, Boston, MA, USA.
Opt Express. 2013 Jul 15;21(14):17299-308. doi: 10.1364/OE.21.017299.
We demonstrate feedback-optimized focusing of spatially coherent polychromatic light after transmission through strongly scattering media, and describe the relationship between optimized focus intensity and initial far-field speckle contrast. Optimization is performed using a MEMS spatial light modulator with camera-based or spectrometer-based feedback. We observe that the spectral bandwidth of the optimized focus depends on characteristics of the feedback signal. We interpret this dependence as a modification in the number of independent frequency components, or spectral correlations, transmitted by the sample, and introduce a simple model for polychromatic focus enhancement that is corroborated by experiment with calibrated samples.
我们展示了在通过强散射介质传输后,对空间相干多色光进行反馈优化聚焦,并描述了优化聚焦强度与初始远场散斑对比度之间的关系。使用基于相机或基于光谱仪的反馈的微机电系统(MEMS)空间光调制器进行优化。我们观察到,优化聚焦的光谱带宽取决于反馈信号的特性。我们将这种依赖性解释为样品传输的独立频率分量数量或光谱相关性的改变,并引入了一个用于多色聚焦增强的简单模型,该模型通过对校准样品的实验得到了证实。