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Investigate molecules with light
Investigate molecules with light

... Linearly polarized light (or polarized on a plane) is the energy that results from ordinary light passing through an optical polarizer filter, where the emerging light is a beam whose electric vector vibrates on a single floor. Actually, the plane-polarized light is the resultant of two circularly p ...
Generation of a dark hollow beam by a four
Generation of a dark hollow beam by a four

... In recent years, with the fast development of atom optics, the laser manipulated cold atoms [1-2] has become one of research hot points in atom optics. In particular, the atomic guide with a blue-detuned dark hollow beam (DHB) was proposed [3] and studied both theoretically [4-5] and experimentally[ ...
Optical fibers are not affected by interference
Optical fibers are not affected by interference

... 1300nm. They also have the advantages of long lifetimes and being cheap. Unfortunately they are large compared to the cross-section of a fiber and so a large amount of light is lost in the coupling of an LED with a fiber. This also reduces the amount of modal control designers have over incident lig ...
Optics Studio Manual - Department of Physics
Optics Studio Manual - Department of Physics

... Welcome to Studio Optics. The purpose of Studio Optics is two-fold: 1. To teach optics in a phenomenological manner. The bulk of our understanding of optics is phenomenological, i.e. based on observation and experiment. Ray optics, mirrors and lenses, telescopes, microscopes, and other imaging devic ...
Adiabatic far-field sub-diffraction imaging ARTICLE Hu Cang *, Alessandro Salandrino
Adiabatic far-field sub-diffraction imaging ARTICLE Hu Cang *, Alessandro Salandrino

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Optical Fiber Communication

... On the basis of number of modes:on the basis of number of modes of propagation the optical fiber are classified into two types: (i) Single mode fiber (SMF) and (ii) Multi-mode fiber (MMF) • Single-mode fibers – in single mode fiber only one mode can propagate through the fiber. This type of fiber h ...
РЕФЕРАТ
РЕФЕРАТ

... Object of study is the process of converting the light field in the coherent optical spectrum analyzers by performing spatial Fourier transform of the test signal. The subject of the study is the generalized characteristics of the coherent spectrum analyzers such as the working range of spatial freq ...
Chapter 25: Interference and Diffraction
Chapter 25: Interference and Diffraction

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UNIVERSITAT ROVIRA I VIRGILI
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... The porous silicon layers have also been characterized using spectroscopic ellipsometry during a stage at the Ecole Polytechnique (Palaiseau, France). This characterization has determined the main physical features of these layers, porosity (and therefore refractive index) and thickness; and has all ...
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... repeaters because they can directly boost the signal just prior to detection. 3. Modulators: Modulation of a light source can be done by direct modulation of direct current supplying the source or by using an external modulator following the source. The simplest form of direct modulation is to chang ...
Laser and its applications
Laser and its applications

... surface just ahead of the cutting tool. The material is softened and hence more readily removed. Because only a small area is heated the cutting tool remains relatively cool. Thus higher cutting rates become possible or alternatively longer tool life can be achieved for a given cutting speed. To red ...
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Interaction Between Electromagnetic Field and Optical Signal

... in BER. It is observed in both cases: amplitude and POLSK modulation. So influence of external EM field disturbance in optical fibers can become more common especially in a long-span high density WDM (HDWDM) systems with high data transmission speed. Results show that larger decrease in signal quali ...
PowerPoint - ECSE - Rensselaer Polytechnic Institute
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... The Kerr effect is attractive for modulation because a relatively small change in the applied electric field is magnified into a larger-than-linear change in refractive index Self-phase modulation occurs because the refractive index varies with higher intensities leading to a positive chirp ...
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Rapid fabrication of 3D terahertz split ring resonator arrays by novel

... allow for multiple patterning steps. For example, in situ removal of the surface mask can allow for consecutive, registered 3DDW to enable incorporation of features disparate from those defined by the mask. Additionally, use of a sacrificial layer (SL) can allow for crosssectional control of the pat ...
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... The spatial coherence properties of wavefields are of fundamental importance since they play a key role in many optical imaging techniques.1 For example, it is well-known that partially coherent wavefields have the potential to carry more information content than fully coherent wavefields and that t ...
Photoelectron imaging of modal interference in
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... evolved into a very active research field. Plasmonic whispering gallery mode (WGM) cavities are highly interesting for their use as biosensors for the label-free detection of biomolecules with a sensitivity down to a single-molecule level [1]. The attractiveness of these structures lies in the stron ...
Optical Component Characterization: A Linear Systems Approach
Optical Component Characterization: A Linear Systems Approach

... Figure 2: An example of the phase response of an optical fiber link over approximately 1.5 THz. Note that that parabolic nature of the phase lends itself to a second order Taylor expansion. Multiplexing (DWDM) systems are generally characterized by these parameters as a function of the incident wave ...
Atomic Force Microscopy
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... metals, polymers, and semiconductors.  Used to study phenomena of: Abrasion, adhesion, cleaning, corrosion, etching, friction, lubricating, plating, and polishing.  AFM can image surface of material in atomic resolution and also measure force at the nano-Newton scale. ...
Experimental observation of the far field diffraction patterns of
Experimental observation of the far field diffraction patterns of

... A large number of spatial effects can be observed when an intense light beam interacts with a nonlinear medium [1-7]. In particular, concentric ring intensity distribution pattern can be induced in the far field of a beam after propagation through a nonlinear material. This effect of spatial phase-m ...
WDM Concepts and Components
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Measurement of the dispersion of air and of refractive index
Measurement of the dispersion of air and of refractive index

... detection of the second harmonic signal. A lens with 100 cm focal length was employed to obtain a weakly focused beam with a relatively long Rayleigh range, which yielded a second harmonic intensity from the second source (S2 in Fig. 1) approximately constant (see Section 3). The first nonlinear sou ...
Generation of radially and azimuthally polarized light by optical
Generation of radially and azimuthally polarized light by optical

Optimization of multilayer reflectors for extreme ultraviolet lithography
Optimization of multilayer reflectors for extreme ultraviolet lithography

Get PDF - OSA Publishing
Get PDF - OSA Publishing

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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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