论文标题
散射介质:随机包装的针孔摄像头
Scattering medium: randomly packed pinhole cameras
论文作者
论文摘要
当光线通过散射介质传播时,由于光线沿着不同的光路线行驶的干扰,从而形成了斑点(波动强度的空间分布),从而阻止了介质内部或另一侧的目标的绝对位置和尺寸的感知。当前,诸如波前塑形,光相结合,散射矩阵测量和斑点自相关成像之类的现行技术只能在没有先验信息的情况下描绘目标结构。在这里,我们表明,散射介质可以概念化为随机填充针孔摄像机的组装,相应的斑点模式是随机移动的针孔图像的叠加。这为桥接目标,散射介质和斑点模式提供了一个新的视角,从而使一个人可以从散射介质的另一侧进行定量定位和介绍目标,这对于所有现有方法都是不可能的。该方法还使我们能够解释一些散布光的现象,这些现象原本是具有挑战性的。例如,为什么斑点模式的形态外观随着目标而变化,为什么很难从厚散射介质中提取信息,以及决定通过散射介质观察的能力的原因。总而言之,该概念在其起步阶段开辟了一扇新的门,以实时揭示散射媒体和信息提取的信息。
When light travels through scattering media, speckles (spatially random distribution of fluctuated intensities) are formed due to the interference of light travelling along different optical paths, preventing the perception of structure, absolute location and dimension of a target within or on the other side of the medium. Currently, the prevailing techniques such as wavefront shaping, optical phase conjugation, scattering matrix measurement, and speckle autocorrelation imaging can only picture the target structure in the absence of prior information. Here we show that a scattering medium can be conceptualized as an assembly of randomly packed pinhole cameras, and the corresponding speckle pattern is a superposition of randomly shifted pinhole images. This provides a new perspective to bridge target, scattering medium, and speckle pattern, allowing one to localize and profile a target quantitatively from speckle patterns perceived from the other side of the scattering medium, which is impossible with all existing methods. The method also allows us to interpret some phenomena of diffusive light that are otherwise challenging to understand. For example, why the morphological appearance of speckle patterns changes with the target, why information is difficult to be extracted from thick scattering media, and what determines the capability of seeing through scattering media. In summary, the concept, whilst in its infancy, opens a new door to unveiling scattering media and information extraction from scattering media in real time.