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Microsphere-mediated optical contrast tuning for designing imaging systems with adjustable resolution gain

机译:微球介导的光学对比度调整,用于设计具有可调分辨率增益的成像系统

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Upon illumination, a dielectric microsphere (μS) can generate a photonic nanojet (PNJ), which plays a role in the super-resolution imaging of a sample placed in the μS’s immediate proximity. Recent microscopy implementations pioneered this concept but, despite the experimental characterization and theoretical modeling of the PNJ, the key physical factors that enable optimization of such imaging systems are still debated. Here, we systematically analyzed the parameters that govern the resolution increase in the case of large-diameter (20?μm) μS-assisted incoherent microscopy by studying both the illumination and the detection light paths. We determined the enhanced-resolution zone created by the μS, in which the detection system has a net resolution gain that we calculated theoretically and subsequently confirmed experimentally. Our results quantitatively describe the resolution enhancement mediated by the optical contrast between the μS and its surrounding medium, and provide concrete means for designing μS-enhanced imaging systems for several application requirements.
机译:在照明时,介电微球(μs)可以产生光子纳米射精(PNJ),其在放置在μs立即接近的样品的超分辨率成像中起作用。最近的显微镜实现开创了这一概念,但尽管PNJ的实验表征和理论建模,但是仍然讨论了这种成像系统优化的关键物理因素。在这里,我们通过研究照明和检测光路径,系统地分析了控制大直径(> 20μm)μs辅助的非相干显微镜的大直径(> 20μm)μs辅助的不相干显微镜的分辨率的参数。我们确定由μs创建的增强分辨率区域,其中检测系统具有我们理论上计算的净分辨率的增益,并随后通过实验证实。我们的结果定量地描述了由μs及其周围介质之间的光学对比度介导的分辨率增强,并提供用于设计μs增强的成像系统的具体装置,以实现几种应用要求。

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