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首页> 外文期刊>Journal of the Optical Society of America, B. Optical Physics >Resolution limit of single-pixel speckle imaging using multimode fiber and optical phased array
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Resolution limit of single-pixel speckle imaging using multimode fiber and optical phased array

机译:使用多模光纤和光相控阵列的单像素散斑成像分辨率限制

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摘要

Imaging through a multimode fiber (MMF) is a promising strategy for in vivo endoscopy due to its nature of simultaneously realizing high spatial resolution and minimal invasiveness. In MMF-based speckle imaging systems, a spatial light modulator (SLM) with a large number of pixels is commonly employed to enable independent controls of all the linearly polarized (LP) modes inside the MMF. Here, instead, we show that such an SLM can be replaced by a compact optical phased array (OPA) with a much smaller number of phase shifters without causing any penalty in resolution or sensitivity. Due to the nonlinear process inherent in field-to-intensity conversion, an OPA with N phase shifters is capable of generating similar to N-2 independent illumination patterns. Since the resolution limit imposed by an MMF with M LP modes per polarization is approximated as 4M, we show that only root 4M phase shifters are essentially required to utilize the full spatial capacity of MMF. We can therefore enjoy the unique benefits of a low-cost, compact, and high-speed OPA that does not require thousands of phase shifters to achieve high-resolution imaging through an MMF. (C) 2021 Optical Society of America
机译:通过多模光纤(MMF)成像是活体内窥镜的一种很有前途的策略,因为它可以同时实现高空间分辨率和最小的侵入性。在基于MMF的散斑成像系统中,通常使用具有大量像素的空间光调制器(SLM)来实现MMF内部所有线偏振(LP)模式的独立控制。在这里,我们展示了这样一种SLM可以被一种紧凑的光学相控阵(OPA)所取代,这种相控阵具有数量少得多的移相器,而不会对分辨率或灵敏度造成任何损失。由于场-强度转换中固有的非线性过程,带有N个移相器的OPA能够生成类似于N-2独立照明模式的照明模式。由于每个极化有M个LP模式的MMF施加的分辨率极限约为4M,我们表明,基本上只需要根4M移相器就可以利用MMF的全部空间容量。因此,我们可以享受低成本、紧凑、高速的OPA带来的独特优势,它不需要数千个移相器就可以通过MMF实现高分辨率成像。(2021)美国光学学会

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