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Fast-Fourier-domain delay line for in vivo optical coherence
Fast-Fourier-domain delay line for in vivo optical coherence

... translating mirror, the optical path length through glass elements varies over the scan, causing variable group-velocity dispersion 共GVD兲, which can be detrimental to the axial resolution. This problem can be partially alleviated, however, if the sample has similar dispersive properties as the glass ...
Total internal reflection fluorescence spectroscopy and microscopy
Total internal reflection fluorescence spectroscopy and microscopy

... disadvantage that the exciting laser beam was displaced on the sample surface when the angle of incidence  was varied. To overcome this problem, the cubic prism was replaced by a prism which together with the microscope object slide (thickness: 1 mm) formed a hemicylinder (radius: 10 mm) with the s ...
Introduction - Strathprints
Introduction - Strathprints

... Second harmonic generation (SHG) is now widely regarded as a valuable tool for investigating electrode surfaces. Typically, most studies have been limited to substrates which lack bulk symmetry and monitoring events such as sub-monolayer formation and surface reconstruction. Here, the development of ...
Monolithic integration of optical waveguide and
Monolithic integration of optical waveguide and

... from separate materials (e.g. encapsulating optical fibers, patterning silicon, or adding highindex polymer). Tighter integration of optical and fluidic structures with reduced fabrication complexity is advantageous for strong light-liquid interactions (e.g. refractometers) and more complex optical ...
Highly doped InP as a low loss plasmonic material for
Highly doped InP as a low loss plasmonic material for

... Two samples with 3 µm and 400 nm thick InP:Si epilayers were grown using different growth conditions on single-side polished (1 0 0) InP:S substrates by low pressure MOVPE. The precursors for phosphorus, indium and silicon were phosphine (PH3), trimethylindium (TMIn) and disilane (Si2H6) respectivel ...
Lec03 - nptel
Lec03 - nptel

... as shown in figure 3.6. Consequently, at the output, skew rays will have minimum energy at the axis of the optical fiber and it will gradually increase towards the periphery of the core. Thus when light energy is launched into an optical fiber, there arises two possible energy distributions; one, wh ...
The Intermediate Optical System of Laser
The Intermediate Optical System of Laser

... however, be easily generated by adding further optical elements. The image of a second mirror may then be formed on the first mirror. If the two mirrors move the beam in orthogonal directions, the object is scanned along orthogonal x and y axes. What happens with the light emitted from the spot illu ...
Introduction to Adaptive Optics and Deformable
Introduction to Adaptive Optics and Deformable

... Understanding Wavefronts | Adaptive Optical Elements and Systems | Key Parameters| Applications In optical systems misalignment of components, imperfections in elements, or aberrations can internally reduce performance, while heat and atmosphere can Deformable Mirrors externally reduce performance.  ...
properties of helium–neon lasers - UCSB Physics
properties of helium–neon lasers - UCSB Physics

... B. Consequently, the light has high "temporal coherence", meaning as you travel along the direction of propagation, the components of the electric field continue to oscillate like a sine-wave with a single wavelength, amplitude, and phase. Of course, no light source generates perfect plane-waves. Re ...
Optical losses
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Scientific Program - Instituto de Física Facultad de Ciencias
Scientific Program - Instituto de Física Facultad de Ciencias

... The results of recent studies performed in the Centro de Investigaciones en Optica (Leon, Mexico) in the field of diode-pumped Erbium fiber lasers (EFL) engineering are presented. The main attention is paid to an inspection of pulsed regimes of the EFL, which have been realized applying various pass ...
Michelson Interferometer
Michelson Interferometer

... your results from working through Section 3. It should not reproduce large chunks of this script, but should include fully annotated tables of measurements, and sufficient details of calculations for your working to be readily followed. ...
Silicon Photonics Optical Transceiver for High-speed, High
Silicon Photonics Optical Transceiver for High-speed, High

... The next-generation servers and supercomputers with high performance and low power consumption require not only CPUs with an enhanced processing capability, but also signal transmission technology that connects CPUs with other CPUs or memories at high density and low power. It is becoming difficult ...
Analysis of Tilted Grating Etalon for DWDM Demultiplexer Sommart Sang-Ngern, Non-member
Analysis of Tilted Grating Etalon for DWDM Demultiplexer Sommart Sang-Ngern, Non-member

Quantum Physics
Quantum Physics

A review of metasurfaces: physics and applications
A review of metasurfaces: physics and applications

... a desired manner, which result in steering the beam propagation direction, shaping the wavefront (e.g., focusing), and imparting information for applications such as sensing, imaging and communication. Conventional optical components are based on refraction, reflection, absorption, and/or diffractio ...
Mechanism of hologram formation in fixation-free rehalogenating bleaching processes
Mechanism of hologram formation in fixation-free rehalogenating bleaching processes

... mW He–Ne laser 共633 nm兲, with the polarization vector prependicular to the plane of incidence. The two beams, of equal intensity, impinged on the emulsion forming an angle 共in air兲 of 45°. With the geometry described, the spatial frequency of the gratings was calculated as 1200 lines兾mm. The experim ...
Part 3 - MZA Associates Corporation
Part 3 - MZA Associates Corporation

... A collimated light source, by definition, transmits almost all of its energy in a narrow beam. To a good approximation, the transmitted light can be thought of as being made up of only those rays that pass through both the actual aperture at the source and an imaginary aperture at or near the beam w ...
Transversal ultrasonic probe
Transversal ultrasonic probe

... between a tip and a plate is investigated with an optical heterodyne interferometer as symmetric S0 and antisymmetric A0 Lamb waves are propagated in the bulk of the plate. Elasto-optic disturbance analysis is carried out for each mode and comparison between both modes is made to best characterize t ...
OPTI 511R, Spring 2015 Problem Set 8 Prof. E. M. Wright Due
OPTI 511R, Spring 2015 Problem Set 8 Prof. E. M. Wright Due

... (Remember that the Hermite-Gaussian solutions are valid for free space as well as within a cavity.) Thus the beam will have a waist w0 that is the same as the waist of the occupied cavity mode, and that is located in the same position in space (at z = 0) as the cavity mode waist. The transverse prof ...
Nonlinear absorption reversing between an
Nonlinear absorption reversing between an

... introduced into 1 mm thick cells in order to be studied by the “open aperture” Z-scan technique. In all cases for the laser energies used the contribution of the solvents has been found to be negligible, so the total response can be attributed to the metal complexes. The transmittance of the sample ...
History of Fiber Optics
History of Fiber Optics

... device to turn the light "on" and "off" in the correct sequence, thereby generating a light signal. The transmitter is physically close to the optical fiber and may even have a lens to focus the light into the fiber. Lasers have more power than LEDs, but vary more with changes in temperature and are ...
IOSR Journal of Computer Engineering (IOSR-JCE) e-ISSN: 2278-0661,p-ISSN: 2278-8727 PP 06-11 www.iosrjournals.org
IOSR Journal of Computer Engineering (IOSR-JCE) e-ISSN: 2278-0661,p-ISSN: 2278-8727 PP 06-11 www.iosrjournals.org

... efficient optical Nano-radiator, and how its tuning and matching properties. We demonstrate that an two element antenna can be used to realize a near field optical probe that combines spatial resolution well below the diffraction limit with transmission efficiency approaching unity. Analogously to a ...
Collimation Tester - Newport Corporation
Collimation Tester - Newport Corporation

... Visit Newport Online at: www.newport.com This Application Note has been prepared based on development activities and experiments conducted in Newport’s Technology and Applications Center and the results associated therewith. Actual results may vary based on laboratory environment and setup condition ...
Optical Fiber Communications Assignments From Senior.pdf
Optical Fiber Communications Assignments From Senior.pdf

... O' Ray 2 becomes refracted at B and reflected at B'. ...
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Ellipsometry

Ellipsometry is an optical technique for investigating the dielectric properties (complex refractive index or dielectric function) of thin films. Ellipsometry can be used to characterize composition, roughness, thickness (depth), crystalline nature, doping concentration, electrical conductivity and other material properties. It is very sensitive to the change in the optical response of incident radiation that interacts with the material being investigated.Typically, the measured signal is the change in polarization as the incident radiation (in a known state) interacts with the material structure of interest (reflected, absorbed, scattered, or transmitted). The polarization change is quantified by the amplitude ratio, Ψ, and the phase difference, Δ (defined below). Because the signal depends on the thickness as well as the materials properties, ellipsometry can be a universal tool for contact free determination of thickness and optical constants of films of all kinds.This technique has found applications in many different fields, from semiconductor physics to microelectronics and biology, from basic research to industrial applications. Ellipsometry is a very sensitive measurement technique and provides unequaled capabilities for thin film metrology. As an optical technique, spectroscopic ellipsometry is non-destructive and contactless. Because the incident radiation can be focused, small sample sizes can be imaged and desired characteristics can be mapped over a larger area (m^2).The one weakness of ellipsometry is the need to model the data. Entire courses are taught in the modeling of the raw data. Models can be physically based on energy transitions or simply free parameters used to fit the data.Upon the analysis of the change of polarization of light, ellipsometry can yield information about layers that are thinner than the wavelength of the probing light itself, even down to a single atomic layer. Ellipsometry can probe the complex refractive index or dielectric function tensor, which gives access to fundamental physical parameters like those listed above. It is commonly used to characterize film thickness for single layers or complex multilayer stacks ranging from a few angstroms or tenths of a nanometer to several micrometers with an excellent accuracy.The name ""ellipsometry"" stems from the fact that Elliptical polarization of light is used. The term ""spectroscopic"" relates to the fact that the information gained is a function of the light's wavelength or energy (spectra). The technique has been known at least since 1888 by the work of Paul Drude, (the term ""ellipsometry"" being first used probably in 1945 ) and has many applications today. A spectroscopic ellipsometer can be found in most thin film analytical labs. Ellipsometry is also becoming more interesting to researchers in other disciplines such as biology and medicine. These areas pose new challenges to the technique, such as measurements on unstable liquid surfaces and microscopic imaging.
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