空间光调制器
光学
极化(电化学)
相位调制
波前
散射
液晶
材料科学
调幅
光散射
调制(音乐)
相位共轭
光场
光电子学
频率调制
物理
计算机科学
化学
相位噪声
激光器
电信
无线电频率
物理化学
声学
作者
Jiamiao Yang,Yuecheng Shen,Yan Liu,Ashton S. Hemphill,Lihong V. Wang
摘要
Optical scattering prevents light from being focused through thick biological tissue at depths greater than ∼1 mm. To break this optical diffusion limit, digital optical phase conjugation (DOPC) based wavefront shaping techniques are being actively developed. Previous DOPC systems employed spatial light modulators that modulated either the phase or the amplitude of the conjugate light field. Here, we achieve optical focusing through scattering media by using polarization modulation based generalized DOPC. First, we describe an algorithm to extract the polarization map from the measured scattered field. Then, we validate the algorithm through numerical simulations and find that the focusing contrast achieved by polarization modulation is similar to that achieved by phase modulation. Finally, we build a system using an inexpensive twisted nematic liquid crystal based spatial light modulator (SLM) and experimentally demonstrate light focusing through 3-mm thick chicken breast tissue. Since the polarization modulation based SLMs are widely used in displays and are having more and more pixel counts with the prevalence of 4 K displays, these SLMs are inexpensive and valuable devices for wavefront shaping.
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