Search results for "Transmission"

showing 10 items of 2080 documents

Comparison of different methods for evaluating the transmission function of a two-stage cylindrical mirror analizer in XPS applications

2007

Three different evaluations of the energy dependence of the transmission-detection function of a two-stage cylindrical electron analyzer have been obtained by resorting to three established procedures. Their relative merits have been tested as follows. First they have been used to correct raw XPS spectra of clean Cu, Ag and Au surfaces. Next, the secondary electron background has been subtracted using Tougaard's method. Finally, the primary electron spectra so obtained have been reanalyzed by peak area measurement in the frame of the modern formalism for quantitative XPS analysis. Ideally a constant residual value should thus be obtained. The variability of these residuals with peak energy …

Physics - Instrumentation and Detectorstwo-stage CMAtransmission function[ SPI.MAT ] Engineering Sciences [physics]/MaterialsXPSFOS: Physical sciencescylindrical mirror analyzer[PHYS.PHYS.PHYS-INS-DET]Physics [physics]/Physics [physics]/Instrumentation and Detectors [physics.ins-det]Instrumentation and Detectors (physics.ins-det)[ PHYS.PHYS.PHYS-INS-DET ] Physics [physics]/Physics [physics]/Instrumentation and Detectors [physics.ins-det][SPI.MAT]Engineering Sciences [physics]/Materials
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Spatial coherence properties of a multiple aperture system an analysis based on the Walsh functions

1997

Analysis of the spatial coherence of the light transmitted by an optical device composed of a periodical array of identical apertures is developed by employing an approach based on the properties of the binary Walsh functions. The successive interactions between each aperture, and the mutual intensity characterizing the coherence state of the transmitted light, can be adequately explained through the behaviour of the Walsh-Hadamard spectrum associated with the intensity distribution resulting from the far-field propagated light at the output of the aperture array.

PhysicsAperture arraySpatial coherenceLight transmissionOpticsbusiness.industryApertureWalsh functionTransmitted lightBinary numberbusinessAtomic and Molecular Physics and OpticsCoherence (physics)Journal of Modern Optics
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Polarization properties of a fiber optic loop mirror

2021

Abstract In this work, we present the spectral polarization properties of a fiber optic loop mirror (FOLM) which includes a 50/50 coupler and 25-cm long highly birefringent (hi-bi) fiber. The modulation depth of the reflection/transmission spectra can be adjusted by twisting the hi-bi fiber at the splices by means of two azimuth rotators (AR). The results show that the polarization properties of the reflection strongly depends on the angle rotation. We found that it is possible to obtain reflection spectral polarization independence for any modulation depth with the proper parameters. The experimental behavior was confirmed by numerical simulations based on the Jones matrix formulation.

PhysicsBirefringencebusiness.industryPhysics::Optics02 engineering and technologyPolarization (waves)Rotation01 natural sciencesAtomic and Molecular Physics and OpticsElectronic Optical and Magnetic Materials010309 opticsAzimuthAmplitude modulation020210 optoelectronics & photonicsOpticsReflection (mathematics)Transmission (telecommunications)0103 physical sciences0202 electrical engineering electronic engineering information engineeringFiberElectrical and Electronic EngineeringbusinessOptics & Laser Technology
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Transition state ensemble optimization for reactions of arbitrary complexity.

2015

In the present work, we use Variational Transition State Theory (VTST) to develop a practical method for transition state ensemble optimization by looking for an optimal hyperplanar dividing surface in a space of meaningful trial collective variables. These might be interatomic distances, angles, electrostatic potentials, etc. Restrained molecular dynamics simulations are used to obtain on-the-fly estimates of ensemble averages that guide the variations of the hyperplane maximizing the transmission coefficient. A central result of our work is an expression that quantitatively estimates the importance of the coordinates used for the localization of the transition state ensemble. Starting fro…

PhysicsBond lengthArbitrarily largeMolecular dynamicsTransition state theoryHyperplaneQuantum mechanicsHistogramGeneral Physics and AstronomyStatistical physicsTransmission coefficientPhysical and Theoretical ChemistryReaction coordinateThe Journal of chemical physics
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Molecular dynamics simulations of elementary chemical processes in liquid water using combined density functional and molecular mechanics potentials.…

1997

A new approach to carry out molecular dynamics simulations of chemical reactions in solution using combined density functional theory/molecular mechanics potentials is presented. We focus our attention on the analysis of reactive trajectories, dynamic solvent effects and transmission coefficient rather than on the evaluation of free energy which is another important topic that will be examined elsewhere. In a previous paper we have described the generalities of this hybrid molecular dynamics method and it has been employed to investigate low energy barrier proton transfer process in water. The study of processes with activation energies larger than a few kT requires the use of specific tech…

PhysicsChemical processReaction stepMolecular dynamics method ; Chemical reactions ; Solvent effects ; Density functional theory ; WaterWaterGeneral Physics and AstronomyMolecular dynamics methodContext (language use)UNESCO::FÍSICA::Química físicaMolecular dynamicsChemical physicsChemical reactionsQuantum mechanicsSolvent effectsDensity functional theoryDensity functional theoryTransmission coefficientPhysical and Theoretical ChemistrySolvent effects:FÍSICA::Química física [UNESCO]QuantumThe Journal of Chemical Physics
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Transmission of torque at the nanoscale

2018

In macroscopic mechanical devices torque is transmitted through gearwheels and clutches. In the construction of devices at the nanoscale, torque and its transmission through soft materials will be a key component. However, this regime is dominated by thermal fluctuations leading to dissipation. Here we demonstrate the principle of torque transmission for a disc-like colloidal assembly exhibiting clutch-like behaviour, driven by $27$ particles in optical traps. These are translated on a circular path to form a rotating boundary that transmits torque to additional particles confined to the interior. We investigate this transmission and find that it is determined by solid-like or fluid-like be…

PhysicsCondensed matter physicsCondensed Matter - Mesoscale and Nanoscale PhysicsStatistical Mechanics (cond-mat.stat-mech)General Physics and AstronomyThermal fluctuationsFOS: Physical sciences02 engineering and technologyDissipationCondensed Matter - Soft Condensed Matter021001 nanoscience & nanotechnologyRotation01 natural sciencesMechanism (engineering)Transmission (telecommunications)0103 physical sciencesMesoscale and Nanoscale Physics (cond-mat.mes-hall)TorqueSoft Condensed Matter (cond-mat.soft)Clutch010306 general physics0210 nano-technologySlippingCondensed Matter - Statistical Mechanics
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Entanglement-induced electron coherence in a mesoscopic ring with two magnetic impurities

2006

We investigate the Aharonov-Bohm (AB) interference pattern in the electron transmission through a mesoscopic ring in which two identical non-interacting magnetic impurities are embedded. Adopting a quantum waveguide theory, we derive the exact transmission probability amplitudes and study the influence of maximally entangled states of the impurity spins on the electron transmittivity interference pattern. For suitable electron wave vectors, we show that the amplitude of AB oscillations in the absence of impurities is in fact not reduced within a wide range of the electron-impurity coupling constant when the maximally entangled singlet state is prepared. Such state is thus able to inhibit th…

PhysicsCoupling constantINTERFERENCEQuantum PhysicsMesoscopic physicsQuantum decoherenceCondensed Matter - Mesoscale and Nanoscale PhysicsSpinsCondensed matter physicsScatteringTRANSMISSIONFOS: Physical sciencesQuantum entanglementElectronQuantum PhysicsQUANTUM WAVE-GUIDECondensed Matter PhysicsCondensed Matter::Mesoscopic Systems and Quantum Hall Effecteffects | decay | survival probabilityElectronic Optical and Magnetic MaterialsMesoscale and Nanoscale Physics (cond-mat.mes-hall)SCATTERINGCondensed Matter::Strongly Correlated ElectronsQuantum Physics (quant-ph)Electron scattering
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Optical demultiplexing of millimeter-wave subcarriers for wireless channel distribution employing dual wavelength FBGs

2007

An optical mm-wave demultiplexer is presented. Double sideband modulation with suppressed optical carrier and filtering properties of dual overwritten fiber Bragg gratings are the fundamentals for optical demultiplexing of mm-wave radio-on-fiber signals: using a single optical carrier, Millimeter-wave signals of 20 and 40 GHz frequencies carrying independent data are created, transmitted over fiber, demultiplexed and wireless distributed to be detected and data recovered in a mobile unit. Double sideband modulation with suppressed optical carrier yields no power penalty due to chromatic dispersion, while the filtering properties of the dual overwritten fiber Bragg gratings allow less than −…

PhysicsDemultiplexerbusiness.industryOptical communicationPhysics::OpticsAtomic and Molecular Physics and OpticsElectronic Optical and Magnetic MaterialsOpticsFiber Bragg gratingOptical Carrier transmission ratesWavelength-division multiplexingDouble-sideband suppressed-carrier transmissionElectrical and Electronic EngineeringPhysical and Theoretical ChemistryPlastic optical fiberbusinessOptical aberrationOptics Communications
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The ATLAS TileCal read-out drivers signal reconstruction

2009

TileCal is the hadronic calorimeter of the ATLAS experiment at the LHC collider at CERN. The Read-Out Drivers (ROD) are the core of the off-detector electronics. The main components of the RODs are the Digital Signal Processor (DSP) placed on the Processing Unit (PU) dautherboards. This paper describes the DSP code and its performance with calibration and real data. The code is divided into two different parts: the first part contains the core functionalities and the second one the reconstruction algorithms. The core acts as an operating system and it controls the configuration, the data reception, transmission, online monitoring and the synchronization between front-end data and the Trigge…

PhysicsDigital signal processorLarge Hadron ColliderPhysics::Instrumentation and Detectorsbusiness.industrySignal reconstructionATLAS experimentElectrical engineeringTransmission (telecommunications)Nuclear electronicsDetectors and Experimental TechniquesbusinessComputer hardwareDigital signal processingEnergy (signal processing)ComputingMethodologies_COMPUTERGRAPHICS2009 IEEE Nuclear Science Symposium Conference Record (NSS/MIC)
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Electron Crystallography – New Methods to Explore Structure and Properties of the Nano World

2012

Electron crystallography, as the branch of science that uses electron scattering, developed in the last century into a manifold and powerful approach to study the structure of matter. Major historical milestones of this development are discussed. Especially electron diffraction experienced recently a renaissance and grew into an established method of structure analysis. The techniques of data collection and processing available nowadays are described.

PhysicsElectron diffractionElectron crystallographyElectron energy loss spectroscopyNano-Scanning transmission electron microscopyStructure (category theory)The RenaissanceNanotechnologyHigh-resolution transmission electron microscopy
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