Search results for "intensity"

showing 10 items of 1091 documents

Space charge and microbunching studies for the injection arc of MESA

2018

For intense electron bunches traversing through bends, as for example the recirculation arcs of an ERL, space charge (SC) may result in beam phase space deterioration. SC modifies the electron transverse dynamics in dispersive regions along the beam line and causes emittance growth for mismatched beams or for specific phase advances. On the other hand, longitudinal space charge together with dispersion can lead to the microbunching instability. The present study focuses on the 180° low energy (5 MeV) injection arc lattice for the multi-turn Mainz Energy-recovering Superconducting Accelerator (MESA), which should deliver a CW beam at 10⁵ MeV for physics experiments with an internal target. W…

PhysicsHistory05 Beam Dynamics and EM Fieldsbusiness.industryElectronInstabilitySpace chargeAccelerator PhysicsComputer Science ApplicationsEducationD08 High Intensity in Linear Accelerators - Space Charge HalosArc (geometry)Transverse planeOpticsBeamlinePhysics::Accelerator PhysicsThermal emittancebusinessBeam (structure)Journal of Physics: Conference Series
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Beta decay and isomer spectroscopy in the 132Sn region: New results from EURICA

2013

A. Jungclaus et al.; XX International School on Nuclear Physics, Neutron Physics and Applications (Varna2013); Open Access. 4 pags.; 1 fig.

PhysicsHistoryIsotope010308 nuclear & particles physicsHigh intensitychemistry.chemical_elementUranium[PHYS.NEXP]Physics [physics]/Nuclear Experiment [nucl-ex]01 natural sciencesBeta decayComputer Science ApplicationsEducationNuclear physicschemistry0103 physical sciencesExtensive dataNeutronAtomic physics010306 general physicsSpectroscopy
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Characterization of self-phase modulated ultrashort optical pulses by spectral phase interferometry

2002

0740-3224; We present the procedure for measuring self-phase modulation of ultrashort laser pulses focused in gases by use of the spectral phase interferometry for direct electric-field reconstruction (SPIDER) technique. We tested the device, which employs a noncollinear type I frequency mixing scheme, by measuring the phase induced by group-velocity dispersion either in a piece of glass or in the compressor of the laser system. Both results were validated by comparison with the expected values. The phase that resulted from self-phase modulation in H2 gas or atmospheric air was then measured and compared with calculations based on a Gaussian beam assumption. A new estimate of the nonlinear …

PhysicsINTENSITYbusiness.industryPhase (waves)Statistical and Nonlinear Physics02 engineering and technologyELECTRIC-FIELD RECONSTRUCTION021001 nanoscience & nanotechnologyLaser01 natural sciencesAtomic and Molecular Physics and Opticslaw.invention010309 opticsInterferometryOpticsMode-lockinglaw0103 physical sciencesDispersion (optics)0210 nano-technologySelf-phase modulationbusinessRefractive indexBandwidth-limited pulseJournal of the Optical Society of America B
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Analysis of photon-scanning tunneling microscope images of inhomogeneous samples: determination of the local refractive index of channel waveguides

1995

Channel waveguides are imaged by a photon-scanning tunneling microscope (PSTM). The polarization of the light and its orientation with respect to the guide axis are shown to be very important parameters in the analysis of the images of such samples. We simulated image formation for the plane of incidence parallel to the axis of the guide. Our theoretical results are qualitatively in agreement with our measurements. These results show the ability of the PSTM to give information about the local refractive-index variations of a sample.

PhysicsImage formationTotal internal reflectionPlane of incidencebusiness.industryPhysics::OpticsPolarization (waves)Atomic and Molecular Physics and OpticsElectronic Optical and Magnetic Materialslaw.inventionLight intensityOpticslawLight beamComputer Vision and Pattern RecognitionScanning tunneling microscopebusinessRefractive indexJournal of the Optical Society of America A
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PERANCANGAN ALAT UKUR INTENSITAS CAHAYA BERBASIS ARDUINO LEONARDO MENGGUNAKAN SENSOR LDR (Light Dependent Resistor)

2020

Lux meter is a device used to measure the intensity of light in an area. The purpose of this thesis is to design a light intensity measuring device using LDR components as a light sensor, comparing light intensity measuring devices made using LDR sensors and Arduino Leonardo based microcontrollers with standard tools. The data used in this study are primary data. The data obtained is then processed using MS. Excel. The type of light bulbs used are Philips CFL (Philips Essential) lamps, each lamp having a power of 5, 8, 11, 14, 18, 23, 27, 32, 35, and 50 watts with a luxmeter vertical distance of 1, 2 and 3 meters from the lamp.
 From the results of testing the tools and processing of c…

PhysicsIncandescent light bulbbusiness.industryLuxPhotodetectorlaw.inventionIntensity (physics)Light intensityOpticslawArduinoMeasuring instrumentMetrebusinessJurnal Natural
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Electrophysiological Correlates of Intensity Resolution Under Forward Masking

2010

Nonsimultaneous masking can severely impair auditory intensity resolution, but the effect strongly depends on the stimulus configuration. For example, an intense forward masker causes a pronounced impairment in intensity resolution for standards presented at intermediate levels, but not for standards presented at low and high levels, resulting in a midlevel hump pattern (Zeng et al., Hear Res 55:223-230, 1991). Several aspects of the phenomenon cannot be explained by mechanisms in the auditory periphery. For instance, backward maskers cause midlevel humps at least as large as the humps caused by forward maskers. The present experiment was aimed at studying the relation between the effects o…

PhysicsIntensity discriminationElectrophysiologymedicine.medical_specialtyAmplitudemedicine.diagnostic_testQUIETForward maskingmedicineStimulus (physiology)ElectroencephalographyAudiologyEvoked potential
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Two frequency oscillation of a photorefractive oscillator as a perturbation of the mirrorless oscillation

2010

We consider the properties of the non-degenerate two frequency regime of oscillation of the semi-linear photorefractive oscillator and analyze its relation with the mirrorless oscillation. We consider the oscillator with or without a frequency shifted feedback by a vibrating mirror. This study shows that these two apparently different phenomena are closely related. We conclude from the obtained results that the two frequency oscillation can be considered as a perturbation of the mirrorless oscillation.

PhysicsLight intensityFour-wave mixingOscillationQuantum mechanicsPerturbation (astronomy)Light beamStatistical and Nonlinear PhysicsPhotorefractive effectPhase conjugationAtomic and Molecular Physics and OpticsPockels effectJournal of the Optical Society of America B
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Computational imaging with single-pixel detection: Applications in scattering media

2014

We describe computational imaging techniques based on single-pixel detection providing multidimensional information of an input scene. The key element of the optical recording stage is a spatial light modulator which sequentially generates a set of intensity light patterns to sample the scene. In this way, it is possible to use single-pixel detectors to measure different optical parameters such as the light intensity, the spectral content, the polarization state, or the phase. The spatial distribution of these parameters is then computed by applying the theory of compressive sampling. In particular, in this contribution we present a new method to transmit images through scattering media. We…

PhysicsLight intensityOpticsSpatial light modulatorCompressed sensingbusiness.industryScatteringOptical recordingDetectorComputingMethodologies_IMAGEPROCESSINGANDCOMPUTERVISIONbusinessPolarization (waves)Light scattering2014 13th Workshop on Information Optics (WIO)
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“Nonlocal” dispersion cancellation with classical light

2009

Nonlocal dispersion cancellation [1] is a quantum phenomenon that relies on the use of a quantum light source, e.g., spontaneous parametric down-conversion (SPDC), providing temporally entangled photon pairs. Each photon in the pair propagates through a dispersive medium [see Fig. 1 (a)]. Under suitable conditions the dispersion of one photon cancels out the dispersion of the other photon, so that their intensity coincidence probability remains unchanged. Nonlocal dispersion cancellation has been experimentally demonstrated [2] and this phenomenon has subsequently triggered important applications in quantum information science, such as quantum-optical coherence tomography, distant clock syn…

PhysicsLight intensityPhotonbusiness.industryQuantum mechanicsDispersion (optics)Quantum entanglementPhotonicsQuantum information sciencebusinessQuantumCoherence (physics)CLEO/Europe - EQEC 2009 - European Conference on Lasers and Electro-Optics and the European Quantum Electronics Conference
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Energy- and k -resolved mapping of the magnetic circular dichroism in threshold photoemission from Co films on Pt(111)

2017

The magnetic circular dichroism in threshold photoemission (TPMCD) for perpendicularly magnetized fcc Co films on Pt(111) has been revisited. A complete mapping of the spectral function $I({E}_{B},{k}_{x},{k}_{y})$ (binding energy ${E}_{B}$, momentum parallel to surface ${k}_{x}$, ${k}_{y}$) and the corresponding TPMCD asymmetry distribution ${A}_{\mathrm{MCD}}({E}_{B},{k}_{x},{k}_{y})$ has been performed for one-photon and two-photon photoemission using time-of-flight momentum microscopy. The experimental results allow distinguishing direct from indirect transitions. The measurements reveal clear band features of direct transitions from bulk bands that show a nontrivial asymmetry pattern. …

PhysicsMagnetic circular dichroismImage (category theory)media_common.quotation_subjectBinding energyAsymmetryMomentumCondensed Matter::Materials ScienceNuclear magnetic resonanceIntermediate stateAtomic physicsEnergy (signal processing)Intensity (heat transfer)media_commonPhysical Review B
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