Search results for "electron cyclotron resonance"

showing 10 items of 75 documents

Studies of electron heating on a 6.4 GHz ECR ion source through measurement of diamagnetic current and plasma bremsstrahlung

2011

Diamagnetic current and low energy (2–70 keV) x-ray bremsstrahlung measurements taken on a 6.4 GHz electron cyclotron resonance ion source (ECRIS) are presented as a function of microwave power, neutral gas pressure and magnetic field configuration. X-ray flux from confined electrons and plasma energy density depend logarithmically on microwave power. This result differs from previous studies performed on ECRISs that operate at higher microwave frequencies, in which the x-ray power increases in an essentially linear fashion with the microwave power. X-ray power and plasma energy density both saturate as the neutral pressure is increased beyond a certain value. The gradient of the magnetic f…

ChemistryAstrophysics::High Energy Astrophysical PhenomenaBremsstrahlungFaraday cupIon currentElectronPlasmaCondensed Matter PhysicsElectron cyclotron resonanceIon sourcesymbols.namesakesymbolsAtomic physicsMicrowavePlasma Sources Science and Technology
researchProduct

Microwave emission related to cyclotron instabilities in a minimum-Belectron cyclotron resonance ion source plasma

2015

Electron cyclotron resonance ion sources (ECRIS) have been essential in the research and applications of nuclear physics over the past 40 years. They are extensively used in a wide range of large-scale accelerator facilities for the production of highly charged heavy ion beams of stable and radioactive elements. ECRISs are susceptible to kinetic instabilities due to resonance heating mechanism leading to anisotropic electron velocity distribution function. Instabilities of cyclotron type are a proven cause of frequently observed periodic bursts of 'hot' electrons and bremsstrahlung, accompanied with emission of microwave radiation and followed by considerable drop of multiply charged ions c…

ChemistrylawWaves in plasmasCyclotronCyclotron resonanceBremsstrahlungAtomic physicsCondensed Matter PhysicsIon cyclotron resonanceIon sourceElectron cyclotron resonanceFourier transform ion cyclotron resonancelaw.inventionPlasma Sources Science and Technology
researchProduct

3D-simulation studies of the modified magnetic multipole structure for an electron cyclotron resonance ion source

2004

Experiments have shown that efficient operation of an electron cyclotron resonance ion source requires that the magnetic field fulfills the so-called scaling laws. In most cases the requirements for the radial magnetic field, i.e. the strength of the magnetic multipole are the most difficult to satisfy. This is due to the fact that the multipole is usually produced from permanent magnets, which makes a value of 1.3 T feasible. One possible solution to increase the multipole field is the so-called Modified MultiPole Structure (JYFL-MMPS). This new idea makes it possible to increase the magnetic field at the places where the plasma flux is in contact with the plasma chamber wall. In this arti…

Cylindrical multipole momentsPhysicsNuclear and High Energy PhysicsMagnetic energyCondensed matter physicsMagnetForce between magnetsCyclotron resonanceMultipole expansionInstrumentationElectron cyclotron resonanceIon cyclotron resonanceComputational physicsNuclear Instruments and Methods in Physics Research Section B: Beam Interactions with Materials and Atoms
researchProduct

Ultra-fast intensified frame images from an electron cyclotron resonance hydrogen plasma at 2.45 GHz: some space distributions of visible and monochr…

2014

First results from an ultra-fast frame image acquisition diagnostic coupled to a 2.45 GHz microwave hydrogen discharge are presented. The plasma reactor has been modified to include a transparent doubled shielded quartz window allowing to viewing the full plasma volume. Pictures describing the breakdown process at 1μs exposure time have been obtained for integrated visible light signal, Balmer-alpha, Balmer-beta lines, and Fulcher-band. Several different plasma emission distributions are reported. The distribution depends on the magnetic field configuration, incident microwave power, and neutral gas pressure. peerReviewed

Dense plasma focusMaterials scienceta114business.industrymicrowave powerAstrophysics::Cosmology and Extragalactic AstrophysicsPlasmaElectron cyclotron resonancemagnetic field configurationPlasma windowOpticsPhysics::Plasma Physicsframe imagesgas pressurePlasma diagnosticsElectromagnetic electron waveAtomic physicsInductively coupled plasmabusinessInstrumentationMicrowaveThe Review of scientific instruments
researchProduct

Studies of plasma breakdown and electron heating on a 14 GHz ECR ion source through measurement of plasma bremsstrahlung

2011

Temporal evolution of plasma bremsstrahlung emitted by a 14?GHz electron cyclotron resonance ion source (ECRIS) operated in pulsed mode is presented in the energy range 1.5?400?keV with 100??s resolution. Such a high temporal resolution together with this energy range has never been measured before with an ECRIS. Data are presented as a function of microwave power, neutral gas pressure, magnetic field configuration and seed electron density. The saturation time of the bremsstrahlung count rate is almost independent of the photon energy up to 100?keV and exhibits similar characteristics with the neutral gas balance. The average photon energy during the plasma breakdown is significantly highe…

Electron densityChemistryTemporal resolutionBremsstrahlungPlasmaElectronAtomic physicsPhoton energyCondensed Matter PhysicsElectron cyclotron resonanceIon sourcePlasma Sources Science and Technology
researchProduct

Carbon nanotubes embedded in a polyimide foil for proton acceleration with a sub-ns laser

2021

A series of thin films made of aligned carbon nanotubes (CNTs) embedded in a polyimide substrate was designed, fabricated and used for the first time to accelerate protons and C ions by interaction with a sub-nanosecond, high power laser beam (600 J energy and 300 ps pulse width) with peak intensity of about 3 × 1016 W/cm2 on target. Each target was 5 μm thick, and the composite material contained CNTs aligned in different directions in the substrate. The results obtained from the analysis of a Thomson Parabola spectrometer, and of the spots imprinted by ions on a series of PM355 nuclear track detectors, indicate high energies (up to 3 MeV for protons and 9 MeV for C ions) and a marked infl…

Ion sources (positive ionsMaterials scienceProtonbusiness.industrySettore ING-IND/20 - Misure E Strumentazione NucleariCarbon nanotubeLaserNegative ionsSettore FIS/03 - Fisica Della Materialaw.inventionElectron beam (EBIS))AccelerationManufacturinglawOptoelectronicsPolyimide foilbusinessElectron cyclotron resonance (ECR)InstrumentationMathematical Physics
researchProduct

Major results from the first plasma campaign of the Wendelstein 7-X stellarator

2017

After completing the main construction phase of Wendelstein 7-X (W7-X) and successfully commissioning the device, first plasma operation started at the end of 2015. Integral commissioning of plasma start-up and operation using electron cyclotron resonance heating (ECRH) and an extensive set of plasma diagnostics have been completed, allowing initial physics studies during the first operational campaign. Both in helium and hydrogen, plasma breakdown was easily achieved. Gaining experience with plasma vessel conditioning, discharge lengths could be extended gradually. Eventually, discharges lasted up to 6 s, reaching an injected energy of 4 MJ, which is twice the limit originally agreed for t…

Magnetic confinementNuclear and High Energy PhysicsTechnology and EngineeringPlasma heatingCyclotron resonanceCONFINEMENT01 natural sciencesElectron cyclotron resonance010305 fluids & plasmaslaw.inventionPHYSICSNuclear physicsstellaratorcurrent drive; magnetic confinement; plasma heating; stellarator; Nuclear and High Energy Physics; Condensed Matter Physicslaw0103 physical sciencesddc:530010306 general physicstellaratorStellaratorPhysicsmagnetic confinementMagnetic confinement fusionplasma heatingcurrent drive;magnetic confinement;plasma heating;stellaratorPlasma530 PhysikCondensed Matter PhysicsTRANSPORTCurrent drivecurrent driveElectron temperaturePlasma diagnosticsAtomic physicsWendelstein 7-X[PHYS.ASTR]Physics [physics]/Astrophysics [astro-ph]StellaratorNuclear Fusion
researchProduct

Study of Gasdynamic Electron Cyclotron Resonance Plasma Vacuum Ultraviolet Emission to Optimize Negative Hydrogen Ion Production Efficiency

2019

Negative hydrogen ion sources are used as injectors into accelerators and drive the neutral beam heating in ITER. Certain processes in low-temperature hydrogen plasmas are accompanied by the emission of vacuum ultraviolet (VUV) emission. Studying the VUV radiation therefore provides volumetric rates of plasma-chemical processes and plasma parameters. In the past we have used gasdynamic ECR discharge for volumetric negative ion production and investigated the dependencies between the extracted H$^-$ current density and various ion source parameters. It was shown that it is possible to reach up to 80 mA/cm$^2$ of negative ion current density with a two electrode extraction. We report experime…

Materials scienceHydrogenPlasma parameterschemistry.chemical_elementFOS: Physical sciencesRadiationplasmafysiikka01 natural sciencesElectron cyclotron resonance010305 fluids & plasmasIonnegative hydrogen ion productionPhysics::Plasma Physics0103 physical sciencesgasdynamic electron cyclotron resonanceInstrumentation010302 applied physicssyklotronitplasma vacuum ultraviolet emissionPlasmaIon sourcePhysics - Plasma PhysicsPlasma Physics (physics.plasm-ph)chemistryPhysics::Accelerator PhysicsAtomic physicsCurrent density
researchProduct

The electron cyclotron resonance ion source with arc-shaped coils concept

2012

The main limitation to further improve the performance of ECR ion sources is set by the magnet technology related to the multipole magnet field used for the closed minimum-B structure. The JYFL ion source group has sought different approaches to improve the strength of the minimum-B structure required for the production of highly charged ion beams. It was found out that such a configuration can be realized with arc shaped coils. The first prototype, electron cyclotron resonance ion source with arc-shaped coils (ARC-ECRIS), was constructed and tested at JYFL in 2006. It was confirmed that such an ion source can be used for the production of highly charged ion beams. Regardless of several cos…

Materials scienceIon beamOptical PhenomenaPlasma Gasesta114Highly charged ionCyclotron resonanceTemperatureParticle acceleratorElectronsCyclotronsModels TheoreticalIon gunIon sourceElectron cyclotron resonancelaw.inventionMagnetic FieldslawAtomic physicsInstrumentationIon cyclotron resonanceReview of Scientific Instruments
researchProduct

First experiments with gasdynamic ion source in CW mode.

2016

A new type of ECR ion source—a gasdynamic ECR ion source—has been recently developed at the Institute of Applied Physics. The main advantages of such device are extremely high ion beam current with a current density up to 600–700 emA/cm2 in combination with low emittance, i.e., normalized RMS emittance below 0.1 π mm mrad. Previous investigations were carried out in pulsed operation with 37.5 or 75 GHz gyrotron radiation with power up to 100 kW at SMIS 37 experimental facility. The present work demonstrates the first experience of operating the gasdynamic ECR ion source in CW mode. A test bench of SMIS 24 facility has been developed at IAP RAS. 24 GHz radiation of CW gyrotron was used for p…

Materials scienceIon beamPlasma parameterscontinuous wave mode01 natural sciences010305 fluids & plasmasIonlaw.inventionOpticslawGyrotron0103 physical scienceselectron cyclotron resonance ion sourcesThermal emittanceInstrumentation010302 applied physicsta114ta213business.industryion beamsHigh voltageIon sourceAtomic physicsbusinessCurrent densityThe Review of scientific instruments
researchProduct