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MLSystems Lab 1 - Fourier v4 - RIT
MLSystems Lab 1 - Fourier v4 - RIT

Michael_Chau_Laeer_Telecomunication_Report
Michael_Chau_Laeer_Telecomunication_Report

Ultrahigh-resolution full-field optical coherence microscopy using
Ultrahigh-resolution full-field optical coherence microscopy using

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Advances in Imaging and Electron Physics, Vol 184 Brochure
Advances in Imaging and Electron Physics, Vol 184 Brochure

PPT - DOE Plasma Science Center
PPT - DOE Plasma Science Center

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Click To

Harnessing a Quantum Design Approach for Making Low
Harnessing a Quantum Design Approach for Making Low

... super-resolving devices at new wavelengths and geometries. KEYWORDS: Metamaterials, superlens, s-SNOM, super-resolution, imaging, hyperlens, quantum well “Classical” metamaterials use subwavelength structuring to generate new optical phenomena, such as negative refraction,1 cloaking,2−4 and lenses t ...
as a PDF - Department of Engineering Science
as a PDF - Department of Engineering Science

... We also note that rays from the object space are mapped onto conjugate rays with the same angle in image space, in accordance with Eq. (2). As such it is possible to see that the limiting angular aperture in the system cmax will essentially limit the overall resolution of the instrument. The effecti ...
phase retrieval by using transport-of
phase retrieval by using transport-of

ders plani - Ventspils Centra sākumskola
ders plani - Ventspils Centra sākumskola

... Aims of the lesson: Build up awareness about the structure of the plant cell by developing students` approach to investigations in a scientific way by working with the microscope and making a drawing. ...
The orbital angular momentum of plasmons caught on video
The orbital angular momentum of plasmons caught on video

... pump-­probe  scheme:  an  initial  (pump)  femtosecond  laser  pulse  starts  a  plasmon  wave  at  the   spiral,  and  a  second,  time-­delayed  (probe)  femtosecond  pulse  is  used  to  image  the  plasmon  wave   by  exploiting  constructive  and  destructive  interference  between  plasmon  an ...
Generalizing the Confocal Microscope via Heterodyne Interferometry and Digital Filtering
Generalizing the Confocal Microscope via Heterodyne Interferometry and Digital Filtering

... The confocal microscope is finding wide use in semiconductor metrology, biology, and other fields, because of its excellent resolution, depth discrimination, and lack of edge artifacts (ringing). The classical confocal microscope measures only intensity, and like an ordinary bright-field microscope, ...
Multiple side imaging and measurement at 90
Multiple side imaging and measurement at 90

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Parts of the Microscope and Their Function

Transmission Electron Microscopy -TEM
Transmission Electron Microscopy -TEM

... were shorter than ordinary light waves and electrons would allow for greater magnification and thus to visualize much smaller structures. The first crude electron microscope was capable of magnifying objects 400 times. The first practical electron microscope was built by in 1938 and had 10 nm resolu ...
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(Digital Micro-Mirror Device) Based Multi-Object

Confocal Live Cell Microscopy
Confocal Live Cell Microscopy

... Now you can make a maximum projection through your z-stack at each time point. Select the “Transparency” tab and check that “Maximum” is chosen (Figure 18). In the “Projection” tab, choose “Number of projections” as 1, and check the box beside “Single time index” (Figure 17). Click “Apply”. Now unch ...
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How I discovered phase contrast

Ch7 Microscopes Notes Powerpoint
Ch7 Microscopes Notes Powerpoint

A laser motor directly transforms light energy into mechanical
A laser motor directly transforms light energy into mechanical

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Lab 2: Abbe Theory of Imaging
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... The laser beam to be used in the experiment has a smooth profile, i.e. the intensity distribution does not have any wiggles, and when it is focused, it produces a single small spot, i.e. the original beam contains only low spatial frequencies. On the other hand, if we pass this beam through a gratin ...
Total intensity and quasi-elastic light
Total intensity and quasi-elastic light

... The scale of these domains is somewhat controversial; our light-scattering estimates are in excellent accord with data reported in the literature for other methods which do not involve addition of molecular probes to the membranes. Recent technical advances making it possible to acquire statisticall ...
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Super-resolution microscopy

Super-resolution microscopy is a form of light microscopy. Due to the diffraction of light, the resolution of conventional light microscopy is limited as stated by Ernst Abbe in 1873. A good approximation of the resolution attainable is the full width at half maximum (FWHM) of the point spread function, and a precise widefield microscope with high numerical aperture and visible light usually reaches a resolution of ~250 nm.Super-resolution techniques allow the capture of images with a higher resolution than the diffraction limit. They fall into two broad categories, ""true"" super-resolution techniques, which capture information contained in evanescent waves, and ""functional"" super-resolution techniques, which use clever experimental techniques and known limitations on the matter being imaged to reconstruct a super-resolution image.True subwavelength imaging techniques include those that utilize the Pendry Superlens and near field scanning optical microscopy, the 4Pi Microscope and structured illumination microscopy technologies like SIM and SMI. However, the majority of techniques of importance in biological imaging fall into the functional category.There are two major groups of methods for functional super-resolution microscopy: Deterministic super-resolution: The most commonly used emitters in biological microscopy, fluorophores, show a nonlinear response to excitation, and this nonlinear response can be exploited to enhance resolution. These methods include STED, GSD, RESOLFT and SSIM. Stochastic super-resolution: The chemical complexity of many molecular light sources gives them a complex temporal behaviour, which can be used to make several close-by fluorophores emit light at separate times and thereby become resolvable in time. These methods include SOFI and all single-molecule localization methods (SMLM) such as SPDM, SPDMphymod, PALM, FPALM, STORM and dSTORM.On October 8th, 2014, the Nobel Prize in Chemistry was awarded to Eric Betzig, W.E. Moerner and Stefan Hell for ""the development of super-resolved fluorescence microscopy,"" which brings ""optical microscopy into the nanodimension"".
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