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Superconcentration of light: circumventing the classical limit to achievable irradiance

机译:光的超浓缩:规避可达到的辐照度的经典限制

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Concentration of light is limited by a fundamental physical principle, which ensures that etendue, the product of area and solid angle, can never decrease in an optical system. In microscopy, many superresolving methods, which can overcome the classical resolution limit, have recently emerged. We propose, and demonstrate experimentally, that it is also possible to circumvent the classical light concentration limit. Actually, most superresolution methods exhibit a common drawback: with respect to the total number of emitted photons, they are less efficient than standard widefield microscopy. Most methods "shave"' the point spread function (PSF) by discarding the disturbing signal from its edge. We show, that in contrast to PSF-shaving, methods related to reassignment microscopy (image scanning microscopy, optical photon reassignment, rescan confocal, instant structured illumination microscopy) concentrate all detected photons in their superresolving images and thereby increase the detected signal per sample area compared to widefield microsopy. We term this behavior superconcentration, as it breaks the classical light concentration limit. (C) 2016 Optical Society of America
机译:光的集中度受基本物理原理的限制,这确保了光学扩展量(面积和立体角的乘积)在光学系统中永远不会减小。在显微镜下,最近出现了许多可以克服经典分辨率极限的超分辨方法。我们提出并通过实验证明,也有可能规避经典的光浓度限制。实际上,大多数超分辨率方法都存在一个共同的缺点:就发射的光子总数而言,它们的效率比标准的宽视野显微镜低。大多数方法是通过丢弃边缘的干扰信号来“消除”点扩展函数(PSF)。我们显示,与PSF剃刮相比,与重新分配显微镜(图像扫描显微镜,光学光子重新分配,重新扫描共聚焦,即时结构照明显微镜)相关的方法将所有检测到的光子集中在其超分辨图像中,从而增加了每个样本区域的检测信号相较于宽视野微粒。我们将这种行为称为超集中,因为它打破了经典的光集中限制。 (C)2016美国眼镜学会

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