Search results for "Accelerator Physics"

showing 10 items of 1294 documents

Nonparaxial shape-preserving Airy beams with Bessel signature

2014

Spatially accelerating beams that are solutions to Maxwell equations may propagate along incomplete circular trajectories. Taking these truncated Bessel fields to the paraxial limit, some authors have sustained that it has recovered the known Airy beams (AiBs). Based on the angular spectrum representation of optical fields, we demonstrated that the paraxial approximation rigorously leads to off-axis focused beams instead of finite-energy AiBs. The latter will arise under the umbrella of a nonparaxial approach following elliptical trajectories in place of parabolas. The analytical expression of such a shape-preserving wave field under Gaussian apodization is disclosed by using third-order no…

PhysicsDiffractionParaxial approximationFOS: Physical sciencesPhysics::OpticsAtomic and Molecular Physics and OpticsAngular spectrum methodsymbols.namesakeClassical mechanicsMaxwell's equationssymbolsPhysics::Accelerator PhysicsLimit (mathematics)Representation (mathematics)Bessel functionBeam (structure)Optics (physics.optics)Physics - Optics
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Electromagnetic scattering by a strip grating with nonplanar illumination

1993

An angular-spectrum method combined with the Galerkin procedure has been used to evaluate the electromagnetic scattering of a beam radiated by an aperture antenna after being incident obliquely upon a strip grating. Integral expressions for the transmitted and reflected fields are obtained. The incident beam radiated by the antenna is diffracted in several beams corresponding to the propagative Floquet harmonics. An angular shift of the transmitted and reflected fundamental harmonic beams has been shown. Comparison between numerical and experimental results validates this method. © 1993 John Wiley & Sons, Inc.

PhysicsDiffractionScatteringbusiness.industryAntenna apertureGratingCondensed Matter PhysicsAtomic and Molecular Physics and OpticsElectronic Optical and Magnetic MaterialsOpticsHarmonicsHarmonicPhysics::Accelerator PhysicsElectrical and Electronic EngineeringAntenna (radio)businessBeam (structure)Computer Science::Information TheoryMicrowave and Optical Technology Letters
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Generation of accelerating beams using nano-scale metallic circular gratings

2014

Spatially accelerating beams that are solutions to the Maxwell equations may propagate along incomplete circular trajectories, after which diffraction broadening takes over and the beams spread out. In this paper we report on numerical simulations that show the conversion of a high-numerical-aperture focused beam into a nonparaxial shape-preserving accelerating beam having a beam-width near the diffraction limit. Beam shaping is induced by a diffractive optical element that consists of a non-planar sub-wavelength grating enabling a Bessel signature.

PhysicsDiffractionbusiness.industryPhysics::OpticsGratingDiffraction efficiencysymbols.namesakeOpticsMaxwell's equationsLimit (music)symbolsPhysics::Accelerator PhysicsbusinessNanoscopic scaleBeam (structure)Bessel function2014 16th International Conference on Transparent Optical Networks (ICTON)
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Characterization of Hong-Ou-Mandel bunched states by quantum homodyne tomography

2014

We experimentally demonstrate quantum homodyne tomography of Hong-Ou-Mandel bunched states, which are created by dynamically adjusting emission timings of two heralded single photons using coupled cavities.

PhysicsDirect-conversion receiverPhotonPhoton statisticsHomodyne detectionQuantum mechanicsPhysics::OpticsPhysics::Accelerator PhysicsCoherent statesQuantum PhysicsTomographyQuantumCharacterization (materials science)
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Extension of Electron Monte Carlo Dose Calculation in Eclipse to Siemens Linear Accelerators

2009

Initially, the implementation of the macro Monte Carlo (MC) method into Eclipse (Varian Medical Systems), named eMC, was carried out for Varian accelerators only. In this work eMC algorithm has been modified to allow also accurate dose calculations for electron beams for Siemens accelerators.

PhysicsDose calculationNuclear TheoryHigh Energy Physics::PhenomenologyPhysics::Medical PhysicsSiemensMonte Carlo methodPhysics::Accelerator PhysicsElectronLinear particle acceleratorEclipseMedical systemsComputational physics
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The influence of Fermi motion on the comparison of the polarization transfer to a proton in elastic e→p and quasi-elastic e→A scattering

2019

Abstract A comparison between polarization-transfer to a bound proton in quasi-free kinematics by the A ( e → , e ′ p → ) knockout reaction and that in elastic scattering off a free proton can provide information on the characteristics of the bound proton. In the past the reported measurements have been compared to those of a free proton with zero initial momentum. We introduce, for the first time, expressions for the polarization-transfer components when the proton is initially in motion and compare them to the 2H data measured at the Mainz Microtron (MAMI). We show the ratios of the transverse ( P x ) and longitudinal ( P z ) components of the polarization transfer in H 2 ( e → , e ′ p → …

PhysicsElastic scatteringNuclear and High Energy Physics010308 nuclear & particles physicsScatteringInitial momentumNuclear TheoryKinematicsPolarization (waves)01 natural sciences7. Clean energyTransverse plane0103 physical sciencesPhysics::Accelerator PhysicsAtomic physicsNuclear Experiment010306 general physicsMicrotronFermi Gamma-ray Space TelescopePhysics Letters B
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Measurements of the antiproton-proton elastic cross section in the beam momentum range between 180 and 600 MeV/c

1991

The differential cross section for antiproton-proton elastic scattering has been measured for the beam momenta between 180 and 600 MeV/c. The real-to-imaginary ratio of the forward elastic scattering amplitude is derived from the Coulomb-nuclear interference. The ratio is found to be close to zero between 180 and 500 MeV/c with a minimum ofρ=−0.14 at 260 MeV/c. This result is contrary to model predictions. The phase shifts for thes-,p- andd-waves are extracted. The partial wave compositions of the elastic and inelastic cross sections have been determined. A large contribution of thep-wave is identified in the antiproton-proton interactions at small momenta.

PhysicsElastic scatteringNuclear and High Energy PhysicsProtonNuclear TheoryPhase (waves)Nuclear physicsMomentumCross section (physics)AmplitudeAntiprotonPhysics::Accelerator PhysicsAtomic physicsNuclear ExperimentParticle Physics - ExperimentBeam (structure)Zeitschrift für Physik A Hadrons and Nuclei
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Performances of the Alpha-X RF gun on the PHIL accelerator at LAL

2015

International audience; The Alpha-X RF-gun was designed to produce an ultra-short (<100 fs rms), 100 pC and 6.3 MeV electron beam with a normalized rms transverse emittance of 1π mm mrad for a gun peak accelerating field of 100 MV/m. Such beams will be required by the Alpha-X project, which aims to study a laser-driven plasma accelerator with a short wavelength accelerating medium. It has been demonstrated on PHIL (Photo-Injector at LAL) that the coaxial RF coupling, chosen to preserve the gun field cylindrical symmetry, is perfectly understood and allows reaching the required peak accelerating field of 100 MV/m giving beam energy of 6.3 MeV. Moreover, a quite low beam rms relative energy s…

PhysicsElectron beamNuclear and High Energy PhysicsBeam dynamicsbusiness.industryRF-gun[PHYS.PHYS.PHYS-ACC-PH]Physics [physics]/Physics [physics]/Accelerator Physics [physics.acc-ph]Solenoid7. Clean energyNuclear physicsTransverse planeOpticsMagnetCathode rayPhotocathodesPhysics::Accelerator PhysicsThermal emittanceCoaxialSchottky effectbusinessInstrumentationBeam (structure)Electron gun
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A status report of the multipurpose superconducting electron cyclotron resonance ion source

2007

Intense heavy ion beam production with electron cyclotron resonance (ECR) ion sources is a common requirement for many of the accelerators under construction in Europe and elsewhere. An average increase of about one order of magnitude per decade in the performance of ECR ion sources was obtained up to now since the time of pioneering experiment of R. Geller at CEA, Grenoble, and this trend is not deemed to get the saturation at least in the next decade, according to the increased availability of powerful magnets and microwave generators. Electron density above 1013 cm(-3) and very high current of multiply charged ions are expected with the use of 28 GHz microwave heating and of an adequate …

PhysicsElectron density[PHYS.PHYS.PHYS-ACC-PH]Physics [physics]/Physics [physics]/Accelerator Physics [physics.acc-ph]Cyclotron resonanceParticle accelerator01 natural sciences7. Clean energyIon sourceElectron cyclotron resonanceCharged particle010305 fluids & plasmaslaw.inventionIon29.25.NiIon sources: positive and negativelaw0103 physical sciencesAtomic physics010306 general physicsInstrumentationMicrowave
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Energy-level shifts of a uniformly accelerated atom between two reflecting plates

2011

We discuss the radiative level shifts of a uniformly accelerated atom moving between two infinite reflecting plates and interacting with a massless scalar field in the vacuum state. The atom, supposed to be a two-level system, accelerates in a direction parallel to the conducting plates. We evaluate separately the contributions of vacuum fluctuations and radiation reaction field to the energy shift of the atomic levels, and discuss their dependence on acceleration, atomic position and cavity length.

PhysicsField (physics)Vacuum stateCondensed Matter PhysicsCasimir-Polder forceAtomic and Molecular Physics and OpticsMassless particleGeneral Relativity and Quantum CosmologyAccelerationAtomRadiative transferPhysics::Accelerator PhysicsUnruh effectPhysics::Atomic PhysicsAtomic physicsScalar fieldMathematical PhysicsQuantum fluctuation
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