Search results for "hypernuclear"

showing 9 items of 9 documents

Hypernuclear Spectroscopy at JLab Hall C

2010

Abstract Since the 1st generation experiment, E89-009, which was successfully carried out as a pilot experiment of (e,e'K+) hypernuclear spectroscopy at JLab Hall C in 2000, precision hypernuclear spectroscopy by the (e,e'K+) reactions made considerable progress. It has evolved to the 2nd generation experiment, E01-011, in which a newly constructed high resolution kaon spectrometer (HKS) was installed and the “Tilt method” was adopted in order to suppress large electromagnetic background and to run with high luminosity. Preliminary high-resolution spectra of 7 Λ He and 28 Λ Al together with that of 12 Λ B that achieved resolution better than 500 keV(FWHM) were obtained. The third generation…

Nuclear physicsPhysicsNuclear and High Energy PhysicsParticle physicsFull width at half maximumLuminosity (scattering theory)Electron spectrometerSpectrometerResolution (electron density)Calibrationhypernuclear; electroproduction; kaon spectrometer; electron spectrometerSpectroscopySpectral lineNuclear Physics A
researchProduct

Summary of the HypHI Phase 0 experiment and future plans with FRS at GSI (FAIR Phase 0)

2016

WOS: 000381331200014

PhysicsNuclear and High Energy PhysicsCOLLISIONSLifetime measurement010308 nuclear & particles physicsInvariant massLIFETIMEHeavy ion induced reactionHYPERNUCLEAR SPECTROSCOPY01 natural sciencesNuclear physicsShort lifetimeStatistical analysesFRS and Super-FRS0103 physical sciencesRI-beamHeavy ionInvariant massLIGHT HYPERFRAGMENTS010306 general physicsSpectroscopyRELATIVISTIC HYPERNUCLEINuclear Physics A
researchProduct

The HypHI Phase 0 experiment

2010

10th International Conference on Hypernuclear and Strange Particle Physics -- SEP 14-18, 2009 -- Tokai, JAPAN

PhysicsNuclear and High Energy PhysicsCarbon graphiteProjectilehypernuclear spectroscopyPhase (waves)LambdaNuclear physicsheavy ion induced reactioninvariant massHeavy ionENERGY NUCLEAR COLLISIONSAtomic physicsSpectroscopyNuclear Physics A
researchProduct

Event reconstruction methods for the HypHI Phase 0 experiment at GSI

2010

WOS: 000282530300034

PhysicsNuclear and High Energy PhysicsEvent reconstructionPhase (waves)Kalman filterHypHICollisionHough transformlaw.inventionHypernuclear spectroscopyNuclear physicsHough transformlawHeavy ionKalman filterSpectroscopyInstrumentationEvent reconstruction
researchProduct

Scintillating fiber detectors for the HypHI project at GSI

2009

WOS: 000270326800009

PhysicsNuclear and High Energy PhysicsHydrogenProjectileDetectorPhase (waves)chemistry.chemical_elementTracking (particle physics)Charged particleHypernuclear spectroscopyNuclear physicsTracking detectorschemistryScintillating fiber detectorsDeposition (phase transition)InstrumentationImage resolution
researchProduct

Production of hypernuclei in peripheral HI collisions: The HypHI project at GSI

2012

ECT Workshop on Strange Hadronic Matter -- SEP 26-30, 2011 -- Trento, ITALY

PhysicsNuclear and High Energy PhysicsPhase (waves)chemistry.chemical_elementInvariant massLIFETIMEHeavy ion induced reactionHypernuclear spectroscopyNuclear physicschemistryMass spectrumLithiumHeavy ionInvariant massENERGY NUCLEAR COLLISIONSAtomic physicsSpectroscopyRELATIVISTIC HYPERNUCLEI
researchProduct

Hypernuclear spectroscopy with heavy ion beams: The HypHI project at GSI and fair

2010

The HypHI experiment for precise hypernuclear spectroscopy with induced reactions of stable heavy ion beams and rare isotope beams is currently under preparation at GSI. The main goal of the HypHI project is to study neutron and proton rich hypernuclei and to measure directly hypernuclear magnetic moments at GSI and FAIR. In the first HypHI experiment (Phase 0) planned in 2009, the feasibility of precise hypernuclear spectroscopy with heavy ion beams will be demonstrated by observing π- decay channels of [Formula: see text], [Formula: see text] and [Formula: see text] with 6 Li projectiles at 2 A GeV impinging on a 12 C target. An overview of the HypHI project and the details of the Phase …

PhysicsNuclear and High Energy PhysicsRI-beamsProtonNuclear TheoryGeneral Physics and AstronomyHypernuclear spectroscopyNuclear physicsmagnetic momentsexotic hypernucleiPhysics::Accelerator PhysicsHeavy ionNeutronheavy ion beamsENERGY NUCLEAR COLLISIONSSpectroscopyNuclear Experiment
researchProduct

Resolution, efficiency and stability of HPGe detector operating in a magnetic field at various gamma-ray energies

2008

Abstract The use of High Purity Germanium detectors (HPGe) has been planned in some future experiments of hadronic physics. The crystals will be located close to large spectrometers where the magnetic fringing field will not be negligible and their performances might change. Moreover high precision is required in these experiments. The contribution of magnetic field presence and long term measurements is unique. In this paper the results of systematic measurements of the resolution, stability and efficiency of a crystal operating inside a magnetic field of 0.8 T, using radioactive sources in the energy range from 0.08 to 1.33 MeV, are reported. The measurements have been repeated during sev…

PhysicsNuclear and High Energy PhysicsSpectrometerField (physics)HPGe; PANDA; Double HypernucleiPANDAResolution (electron density)DetectorHPGe detectorsGamma raychemistry.chemical_elementHPGe detectors; hypernuclear gamma-ray spectroscopy; magnetic fieldGermaniummagnetic fieldSemiconductor detectorComputational physicsMagnetic fieldNuclear physicshypernuclear gamma-ray spectroscopychemistryDouble HypernucleiHPGeNuclear ExperimentInstrumentation
researchProduct

Performance of HPGe detectors in high magnetic field

2006

A new generation of high-resolution hypernuclear gamma$-spectroscopy experiments with high-purity germanium detectors (HPGe) are presently designed at the FINUDA spectrometer at DAPhiNE, the Frascati phi-factory, and at PANDA, the antiproton proton hadron spectrometer at the future FAIR facility. Both, the FINUDA and PANDA spectrometers are built around the target region covering a large solid angle. To maximise the detection efficiency the HPGe detectors have to be located near the target, and therefore they have to be operated in strong magnetic fields B ~ 1 T. The performance of HPGe detectors in such an environment has not been well investigated so far. In the present work VEGA and EURO…

PhysicsNuclear and High Energy PhysicsSpectrometerPreamplifierPhysics::Instrumentation and DetectorsHPGe detectorsHadronDetectorFOS: Physical sciencesSemiconductor detectorMagnetic fieldNuclear physicshypernuclear gamma-spectroscopy; HPGe detectorshypernuclear gamma-spectroscopyRise timeMagnetPhysics::Accelerator PhysicsHigh Energy Physics::ExperimentNuclear Experiment (nucl-ex)Nuclear ExperimentInstrumentationNuclear Experiment
researchProduct