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Titlebook: Coherent Light Microscopy; Imaging and Quantita Pietro Ferraro,Adam Wax,Zeev Zalevsky Book 2011 Springer-Verlag Berlin Heidelberg 2011 Holo

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https://doi.org/10.1007/978-3-030-68117-3s proposed. We show that, by means of a tunable lithium niobate phase grating, it is possible to increase the numerical aperture of the imaging system, thus improving the spatial resolution of the images in two dimensions. The enhancement of the numerical aperture of the optical system is obtained b
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Quantitative Phase Microscopy for Accurate Characterization of Microlens Arraysholography-based characterization of both liquid and polymeric microlenses fabricated by an innovative pyro-electrowetting process. The actuation of liquid and polymeric films is obtained through the use of pyroelectric charges generated into polar dielectric lithium niobate crystals.
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https://doi.org/10.1007/978-3-642-15813-1Holographic microscopy; IR- and UV microscoopy; Light microscopy; Optical coherent interferometry; Super
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978-3-642-26710-9Springer-Verlag Berlin Heidelberg 2011
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Coherent Light Microscopy978-3-642-15813-1Series ISSN 0931-5195 Series E-ISSN 2198-4743
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Cheng Guo,Cuiyan Han,Hui Yan,Lei Liholography-based characterization of both liquid and polymeric microlenses fabricated by an innovative pyro-electrowetting process. The actuation of liquid and polymeric films is obtained through the use of pyroelectric charges generated into polar dielectric lithium niobate crystals.
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Point Source Digital In-Line Holographic Microscopyogical applications, that routinely achieves both lateral and depth resolution at the submicron level in 3-D imaging. This review will cover the history of this field and give details of the theoretical and experimental background. Numerous examples from microfluidics and biology will demonstrate th
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Digital Holographic Microscopy Working with a Partially Spatial Coherent Sourcee application requirements, the sources are made from a spatially filtered LED or from a decorrelated laser beam. The benefits gained with those sources are indicated. A major advantage is the drastic reduction of the speckle noise making possible high image quality and the proper emulation of phase
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Quantitative Phase Contrast in Holographic Microscopy Through the Numerical Manipulation of the Retrative and qualitative mapping of biological samples. A detailed description of the recent methods based on the possibility offered by DH to numerically manage the reconstructed wavefronts is reported. Depending on the sample and on the investigation to be performed it is possible, by a single acquir
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