Search results for "PLASMA"

showing 10 items of 4043 documents

Hydraulic assessment of an upgraded pipework arrangement for the DEMO divertor plasma facing components cooling circuit

2021

Abstract In the context of the Work Package DIVertor (WPDIV) of the EUROfusion action, a research campaign has been carried out by University of Palermo in cooperation with ENEA to assess the thermal-hydraulic performances of the DEMO divertor cooling system, concentrating the attention on its 2019 Plasma Facing Components (PFCs) configuration, relevant to DEMO baseline 2017. The research activity has been performed following a theoretical-numerical technique based on the finite volume method and adopting the well-known ANSYS CFX CFD code. The PFCs cooling circuit thermal-hydraulic performances under nominal steady-state conditions, assessed mainly in terms of coolant total pressure drop, c…

Nuclear engineeringContext (language use)01 natural sciences010305 fluids & plasmaslaw.inventionDivertorlaw0103 physical sciencesWater coolingGeneral Materials ScienceTotal pressure010306 general physicsDEMOPlasma facing componentsSettore ING-IND/19 - Impianti NucleariCivil and Structural EngineeringThermofluid-dynamicsCritical heat fluxMechanical EngineeringDivertorCoolantAxial compressorNuclear Energy and EngineeringEnvironmental scienceInlet manifoldCFD analysis
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Preliminary design of the top cap of DEMO Water-Cooled Lithium Lead breeding blanket segments

2020

Abstract Within the framework of EUROfusion R&D activity, a research campaign has been carried out at the University of Palermo, in close cooperation with ENEA labs, in order to preliminary design the top cap foreseen for the DEMO Water-Cooled Lithium Lead (WCLL) breeding blanket segments. Due to the high heat and pressure loads acting on such component, its design results particularly demanding and a specific multi-physics approach is needed, covering several aspects from thermal-hydraulics to structural assessments. Preliminary detailed CAD model of the cap integrated into the upper region of the WCLL breeding blanket outboard central segment has been set-up, equipped with proper cooling …

Nuclear engineeringchemistry.chemical_elementBlanket7. Clean energy01 natural sciencesTop cap010305 fluids & plasmasLead (geology)Component (UML)0103 physical sciencesGeneral Materials Science010306 general physicsDEMOSettore ING-IND/19 - Impianti NucleariCivil and Structural EngineeringElectronic circuitStructural materialMechanical EngineeringWater cooledCapWCLLNuclear Energy and EngineeringchemistryEnvironmental scienceMulti-physicsLithiumBreeding blanketFusion Engineering and Design
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Photons and Lepton Pairs — The Deep Probes of Quark-Gluon Plasma

1993

Photons and lepton pairs are close to the ideal probes to study the dynamics of the dense system of strongly interacting quanta expected to be produced in ultrarelativistic nucleus-nucleus collisions1,2. Electromagnetic interactions are strong enough to lead to a detectable signal from the secondary collisions of final state particles, yet, they are weak enough to let the emitted photons and leptons to escape from the finite nuclear system without further interactions. Thus, the spectra of photons and dileptons from the dense phase of the collision can provide information on the properties of the constituents and on their momentum distributions.

Nuclear physicsMomentumPhysicsParticle physicsPhotonNuclear TheoryQuark–gluon plasmaPhase (waves)Nuclear ExperimentNuclear systemSignalSpectral lineLepton
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Beta-delayed neutron spectra for application in reactor technology, nuclear physics and astrophysics

1986

Abstract Recent developments in s-delayed neutron (DN) spectroscopy are reviewed, and the importance of DN energy spectra for various problems in reactor physics, nuclear physics and astrophysics is discussed.

Nuclear physicsPhysicsBeta (plasma physics)Nuclear TheoryGeneral EngineeringNeutronAstrophysicsNuclear ExperimentSpectroscopyDelayed neutronSpectral lineRadiation Effects
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Gamow-Teller Beta Decay of Neutron Rich Tc, Ru, Rh and Pd Isotopes

1988

During recent experiments at the IGISOL-facility several new neutron rich nuclides have been discovered, including the first direct observations of the beta decays of 111Tc, 112Ru, 113Ru, 114Ru, 113Rh, 115Rh, 116Rh and 118Pd. The role of the νg7/2 → πg9/2 transformation in the beta decays of the odd-odd 110–116Rh and the even-even 114–118Pd isotopes is shown to be dominant. The experimental results are compared with shell model calculations including deformation and pairing.

Nuclear physicsPhysicsIsotopePairingBeta (plasma physics)SHELL modelNeutronNuclideBeta decay
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On the double-beta decays of 70Zn, 86Kr, 94Zr, 104Ru, 110Pd and 124Sn

2011

Abstract Double-beta decays of 70Zn, 86Kr, 94Zr, 104Ru, 110Pd and 124Sn to the final ground states and the decays of 110Pd and 124Sn to the excited states in 110Cd and 124Te are studied in the framework of the proton–neutron quasiparticle random-phase approximation (pnQRPA) combined with the multiple-commutator model (MCM) for description of decays to the excited final states. Reasonably large single-particle model spaces and G-matrix-based effective nuclear forces are used to compute the relevant nuclear matrix elements and decay half-lives. The present study is among the very few that have been dedicated to double-beta decays of these nuclei, although the associated double-beta Q values e…

Nuclear physicsPhysicsNuclear and High Energy PhysicsParticle physicsDouble beta decayExcited stateBeta (plasma physics)QuasiparticleBibliographyNuclear forceHigh Energy Physics::ExperimentGround stateNuclear Physics A
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J/ψsuppression at forward rapidity in Au+Au collisions atsNN=200GeV

2011

Heavy quarkonia are observed to be suppressed in relativistic heavy-ion collisions relative to their production in p + p collisions scaled by the number of binary collisions. In order to determine if this suppression is related to color screening of these states in the produced medium, one needs to account for other nuclear modifications including those in cold nuclear matter. In this paper, we present new measurements from the PHENIX 2007 data set of J/psi yields at forward rapidity (1.2 < vertical bar y vertical bar < 2.2) in Au + Au collisions at root s(NN) = 200 GeV. The data confirm the earlier finding that the suppression of J/. at forward rapidity is stronger than at midrapidity, whi…

Nuclear physicsPhysicsNuclear and High Energy PhysicsParticle physicsQuark–gluon plasmaBinary numberPartonRapidityCharm (quantum number)Nuclear ExperimentBreakupNuclear matterGluonPhysical Review C
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SHIPTRAP—a capture and storage facility for heavy radionuclides at GSI

2002

Abstract SHIPTRAP will be an ion-trap facility for heavy radionuclides delivered from SHIP. Ion traps are a perfect instrument for precision measurements since the ions can be cooled to an extremely small phase space and can be stored for a very long time. In addition one can achieve very high purity by removing contaminant ions. SHIPTRAP will extend the possibilities of measurements in traps to transuranium nuclides and provide cooled and isobarically pure ion bunches.

Nuclear physicsPhysicsNuclear and High Energy PhysicsRadionuclideBunchesPhysics::Plasma PhysicsPhysics::Atomic PhysicsNuclideNuclear ExperimentComputer Science::DatabasesTransuranium elementIonNuclear Physics A
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Investigation of a gas-catcher/ion guide system using alpha-decay recoil products

2002

Abstract 219Rn recoils from the alpha decay of 223Ra have been used to study the efficiency and delay time distributions of a gas-catcher/ion guide system. Ions with charge states up to +4 were coming out of the gas cell. Combining efficiency and delay time measurements, ion survival times in plasma free conditions can be deduced.

Nuclear physicsPhysicsNuclear and High Energy PhysicsRecoilPhysics::Plasma PhysicsComing outCharge (physics)Alpha decayPlasmaAtomic physicsIonDelay timeNuclear Physics A
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T2-beta-spectroscopy at KATRIN and the challenge of controlling the electrostatic potentials

2013

Abstract The KATRIN-Collaboration at KIT-Karlsruhe is setting up a huge electrostatic spectrometer in order to search for the absolute value of the neutrino mass from the beta-spectrum of molecular tritium with a sensitivity limit of 0.2 eV. Apart from high intensity, high resolution and low background, this goal requires control of the 18.6 kV filter potential on the ppm level. The paper starts with discussing the impact of uncertainties of beta-endpoint, energy loss and filter potential on the uncertainty of the neutrino mass. Then it describes the various measures for controlling the applied high voltage as well as the potential distribution within the spectrometer and the gaseous tritiu…

Nuclear physicsPhysicsNuclear and High Energy PhysicsSpectrometerPhysics::Instrumentation and DetectorsFilter (video)Beta (plasma physics)High voltageAbsolute valueNeutrinoSpectroscopyAtomic and Molecular Physics and OpticsKATRINNuclear Physics B - Proceedings Supplements
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