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Measuring and Modelling Light Scattering in Paper
Measuring and Modelling Light Scattering in Paper

Get PDF - OSA Publishing
Get PDF - OSA Publishing

The Microscope in a Computer: Image Synthesis from Three
The Microscope in a Computer: Image Synthesis from Three

Full text - Simon Fraser University
Full text - Simon Fraser University

... adapt to living in this foreign land. I also thank all the professors who give me ideas for physics and research. Thanks to Dr. George Kirczenow’s valuable suggestions for my project. I am very grateful for Dr. Malcolm Kennett’s patient help for my physics study, answering my endless questions. I ap ...
Phase retrieval in X-ray phase-contrast imaging suitable for
Phase retrieval in X-ray phase-contrast imaging suitable for

... *anna.burvall@biox.kth.se ...
SO2 DETECTION USING PLASMON DAMPING By ELI KASA
SO2 DETECTION USING PLASMON DAMPING By ELI KASA

Partially coherent beam shaping and imaging
Partially coherent beam shaping and imaging

... primary light sources, such as thermal sources, whose statistical properties are time-invariant. This kind of random sources can be best described using the optical coherence theory of light [1], which is based on correlation functions obtained either by calculating time averages of certain products ...
Light & Matter: Absorption and Scattering
Light & Matter: Absorption and Scattering

Femtosecond powder diffraction with a laser-driven hard X
Femtosecond powder diffraction with a laser-driven hard X

... structure and - in principle - of the charge density distribution. So far, mainly Bragg diffraction from single crystals has been applied and changes of angular position and intensity of single or a small number of Bragg peaks have been measured for a limited range of samples. A much wider class of ...
Correlated diffraction and fluorescence in the backscattering
Correlated diffraction and fluorescence in the backscattering

... genus, Troides prattorum 共Joicey and Talbot, 1922兲 共restricted to the Indonesian Island Buru兲 and Troides magellanus 共C. Felder and R. Felder, 1862兲 共distributed in the Philippines and Taiwan兲 display a curious optical phenomenon: the male adult butterflies—besides very absorbing, black, forewings—p ...
Persistence of uranium emission in laser
Persistence of uranium emission in laser

High-Resolution Transmission Electron Microscopy
High-Resolution Transmission Electron Microscopy

Photo-induced metal–ligand bond weakening, potential
Photo-induced metal–ligand bond weakening, potential

DU4301727731
DU4301727731

fourier2012.pdf
fourier2012.pdf

Simultaneous spatial and temporal focusing: A route towards
Simultaneous spatial and temporal focusing: A route towards

... On the other hand weaker focusing with lower NA enables wide-field imaging of the sample area, but suffers from low axial resolution and reduced contrast due to the enlarged Rayleigh length, which also causes the excitation of fluorescent molecules upstream and downstream from the focal plane. More ...
Wormald Coupland On measuring 3D flow within inkjet droplet
Wormald Coupland On measuring 3D flow within inkjet droplet

Exam 1 Goals
Exam 1 Goals

pdf
pdf

Density Measurements of a Turbulent Wake using Acetone PLIF
Density Measurements of a Turbulent Wake using Acetone PLIF

Jahn−Teller Distortion in the Phosphorescent Excited State of Three
Jahn−Teller Distortion in the Phosphorescent Excited State of Three

Automated circuit fabrication and direct characterization of carbon
Automated circuit fabrication and direct characterization of carbon

Measuring the spatiotemporal electric field of
Measuring the spatiotemporal electric field of

Modulating the electronic structures of graphene by controllable
Modulating the electronic structures of graphene by controllable

... state, associated with obvious changes in electron states located at high BE. The origin of these two electron states should be the sp2 C clusters encircled by sp3 C matrix at high H coverage. The electron states at 3.4 eV should result from localized ␲ resonance in six-sp2 C-ring encircled by sp3 C ...
High-Resolution Retinal Imaging using Adaptive Optics in a
High-Resolution Retinal Imaging using Adaptive Optics in a

... The work described in the remaining pages of this thesis is only a part of what the whole PhD experience is about – the easiest part to write about. Trying to describe this experience is a next-to-impossible task; so I will not attempt such a feat. It suffices to say that all the hyperbolic clichés ...
< 1 ... 6 7 8 9 10 11 12 13 14 ... 57 >

Chemical imaging

Chemical imaging (as quantitative – chemical mapping) is the analytical capability to create a visual image of components distribution from simultaneous measurement of spectra and spatial, time information.The main idea - for chemical imaging, the analyst may choose to take as many data spectrum measured at a particular chemical component in spatial location at time; this is useful for chemical identification and quantification. Alternatively, selecting an image plane at a particular data spectrum (PCA - multivariable data of wavelength, spatial location at time) can map the spatial distribution of sample components, provided that their spectral signatures are different at the selected data spectrum.Software for chemical imaging is most specific and distinguished from chemical methods such as chemometrics. Hyperspectral imaging is most often applied to either solid or gel samples, and has applications in chemistry, biology, medicine, pharmacy (see also for example: food science, biotechnology, agriculture and industry. NIR, IR and Raman chemical imaging is also referred to as hyperspectral, spectroscopic, spectral or multispectral imaging (also see microspectroscopy). However, other ultra-sensitive and selective imaging techniques are also in use that involve either UV-visible or fluorescence microspectroscopy. Many imaging techniques can be used to analyze samples of all sizes, from the single molecule to the cellular level in biology and medicine, and to images of planetary systems in astronomy, but different instrumentation is employed for making observations on such widely different systems.Imaging instrumentation has three components: a radiation source to illuminate the sample, a spectrally selective element, and usually a detector array (the camera) to collect the images. When many stacked spectral channels (wavelengths) are collected for different locations of the microspectrometer focus on a line or planar array in the focal plane, the data is called hyperspectral; fewer wavelength data sets are called multispectral. The data format is called a hypercube. The data set may be visualized as a data cube, a three-dimensional block of data spanning two spatial dimensions (x and y), with a series of wavelengths (lambda) making up the third (spectral) axis. The hypercube can be visually and mathematically treated as a series of spectrally resolved images (each image plane corresponding to the image at one wavelength) or a series of spatially resolved spectra. Many materials, both manufactured and naturally occurring, derive their functionality from the spatial distribution of sample components. For example, extended release pharmaceutical formulations can be achieved by using a coating that acts as a barrier layer. The release of active ingredient is controlled by the presence of this barrier, and imperfections in the coating, such as discontinuities, may result in altered performance. In the semi-conductor industry, irregularities or contaminants in silicon wafers or printed micro-circuits can lead to failure of these components. The functionality of biological systems is also dependent upon chemical gradients – a single cell, tissue, and even whole organs function because of the very specific arrangement of components. It has been shown that even small changes in chemical composition and distribution may be an early indicator of disease. Any material that depends on chemical gradients for functionality may be amenable to study by an analytical technique that couples spatial and chemical characterization. To efficiently and effectively design and manufacture such materials, the ‘what’ and the ‘where’ must both be measured. The demand for this type of analysis is increasing as manufactured materials become more complex. Chemical imaging techniques is critical to understanding modern manufactured products and in some cases is a non-destructive technique so that samples are preserved for further testing.
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