Search results for "C.M.M."

showing 10 items of 1066 documents

Solar antineutrinos from fluctuating magnetic fields at Kamiokande

1998

We consider the effect of a strongly chaotic magnetic field at the narrow bottom of the convective zone of the Sun together with resonant matter oscillations on the production of electron Majorana antineutrinos. Even for moderate levels of noise, we show that it is possible to obtain a small but significant probability for $\nu_e\to \bar{\nu}_e$ conversions (1-3%) at the energy range 2-10 MeV for large regions of the mixing parameter space while still satisfying present (Super)-Kamiokande antineutrino bounds and observed total rates. In the other hand it would be possible to obtain information about the solar magnetic internal field if antineutrino bounds reach the 1% level and a particle p…

PhysicsNuclear and High Energy PhysicsParticle physicsField (physics)Magnetic momentFOS: Physical sciencesElectronParameter spaceMagnetic fieldHigh Energy Physics - PhenomenologyMAJORANAHigh Energy Physics - Phenomenology (hep-ph)Convection zoneHigh Energy Physics::ExperimentNeutrinoPhysics Letters B
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Bounds on the Tau Magnetic Moments: Standard Model and Beyond

2001

We obtain new bounds for the magnetic dipole moments of the tau lepton. These limits on the magnetic couplings of the tau to the electroweak gauge bosons (gamma, W, Z) are set in a model independent way using the most general effective Lagrangian with the SU(2)_L x U(1)_Y symmetry. Comparison with data from the most precise experiments at high energies shows that the present limits are more stringent than the previous published ones. For the anomalous magnetic moment the bounds are, for the first time, within one order of magnitude of the standard model prediction.

PhysicsNuclear and High Energy PhysicsParticle physicsGauge bosonMagnetic momentAnomalous magnetic dipole momentElectroweak interactionFOS: Physical sciencesAtomic and Molecular Physics and OpticsSymmetry (physics)Partícules (Física nuclear)Standard ModelHigh Energy Physics - PhenomenologyHigh Energy Physics - Phenomenology (hep-ph)Magnetic dipoleLepton
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Status of the g-2 experiment at BNL

1999

The muon g-2 experiment at Brookhaven has successfully completed two exploratory runs using pion injection and direct muon injection for checkout and initial data taking. The main components of the experiment, which include the pion beam line, the superconducting storage ring and inflector magnets, the muon kicker and the lead-scintillating fiber calorimeters have been satisfactorily commissioned. First results on the anomalous magnetic moment of the positive muon from pion injection are in good agreement with previous experimental results for a(mu+) and a(mu-) from CERN and of comparable accuracy (13 ppm). Analysis of the 1998 muon injection run is in progress and expected to improve the p…

PhysicsNuclear and High Energy PhysicsParticle physicsLarge Hadron ColliderMuonMesonAnomalous magnetic dipole momentPhysics::Instrumentation and DetectorsMUONAtomic and Molecular Physics and OpticsNuclear physicsPionDIPOLE-MOMENTAntimatterPhysics::Accelerator PhysicsHigh Energy Physics::ExperimentANOMALOUS MAGNETIC-MOMENTStorage ringLeptonNuclear physics b-Proceedings supplements
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Model independent bounds on the tau lepton electromagnetic and weak magnetic moments

2000

Using LEP1, SLD and LEP2 data, for tau lepton production, and data from CDF, D0 and LEP2, for W decays into tau leptons, we set model independent limits on non-standard electromagnetic and weak magnetic moments of the tau lepton. The most general effective Lagrangian giving rise to tau moments is used without further assumptions. Precise bounds ($2\sigma$) on the non-standard model contributions to tau electromagnetic ($-0.007<a_\gamma< 0.005$), tau Z-magnetic ($-0.0024 <a_Z< 0.0025$) and tau W-magnetic ($-0.003 < \kappa^W < 0.004$) dipole moments are set from the analysis.

PhysicsNuclear and High Energy PhysicsParticle physicsMagnetic momentElectromagnetisme MesuramentsHigh Energy Physics::PhenomenologyFOS: Physical sciencesDipoleHigh Energy Physics - PhenomenologyHigh Energy Physics - Phenomenology (hep-ph)Effective lagrangianProduction (computer science)High Energy Physics::ExperimentFísica nuclearLepton
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Magnetic dipole moment of theΔ+(1232)from theγp→γπ0preaction

2001

The $\ensuremath{\gamma}\stackrel{\ensuremath{\rightarrow}}{p}\ensuremath{\gamma}{\ensuremath{\pi}}^{0}p$ reaction in the $\ensuremath{\Delta}(1232)$-resonance region is investigated as a method to access the ${\ensuremath{\Delta}}^{+}(1232)$ magnetic dipole moment. The calculations are performed within the context of an effective Lagrangian model containing both the $\ensuremath{\Delta}$-resonant mechanism and a background of nonresonant contributions to the $\ensuremath{\gamma}\stackrel{\ensuremath{\rightarrow}}{p}\ensuremath{\gamma}{\ensuremath{\pi}}^{0}p$ reaction. Results are shown both for existing and forthcoming $\ensuremath{\gamma}\stackrel{\ensuremath{\rightarrow}}{p}\ensuremath{\…

PhysicsNuclear and High Energy PhysicsParticle physicsMagnetic momentHigh Energy Physics::PhenomenologyEffective lagrangianPiContext (language use)Feynman graphSensitivity (control systems)Atomic physicsBorn approximationPhysical Review C
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Anomalous tensor magnetic moments and form factors of the proton in the self-consistent chiral quark-soliton model

2010

We investigate the form factors of the chiral-odd nucleon matrix element of the tensor current. In particular, we aim at the anomalous tensor magnetic form factors of the nucleon within the framework of the SU(3) and SU(2) chiral quark-soliton model. We consider $1/N_c$ rotational corrections and linear effects of SU(3) symmetry breaking with the symmetry-conserving quantization employed. We first obtain the results of the anomalous tensor magnetic moments for the up and down quarks: $\kappa_{T}^{u}=3.56$ and $\kappa_{T}^{d}=1.83$, respectively. The strange anomalous tensor magnetic moment is yielded to be $\kappa_{T}^{s}=0.2\sim -0.2$, that is compatible with zero. We also calculate the co…

PhysicsNuclear and High Energy PhysicsParticle physicsMagnetic momentNuclear TheoryQuark modelHadronHigh Energy Physics - Lattice (hep-lat)FOS: Physical sciencesElementary particleSymmetry groupHigh Energy Physics - ExperimentNuclear Theory (nucl-th)High Energy Physics - Experiment (hep-ex)High Energy Physics - PhenomenologyHigh Energy Physics - Phenomenology (hep-ph)High Energy Physics - LatticeSymmetry breakingNucleonSpecial unitary group
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Pulsar Velocities without Neutrino Mass

1998

We show that pulsar velocities may arise from anisotropic neutrino emission induced by resonant conversions of massless neutrinos in the presence of a strong magnetic field. The main ingredient is a small violation of weak universality and neither neutrino masses nor magnetic moments are required.

PhysicsNuclear and High Energy PhysicsParticle physicsMagnetic momentPhysics::Instrumentation and DetectorsAstrophysics::High Energy Astrophysical PhenomenaHigh Energy Physics::PhenomenologyAstrophysics (astro-ph)General Physics and AstronomyFísicaFOS: Physical sciencesElementary particleSolar neutrino problemAstrophysicsAtomic and Molecular Physics and OpticsMagnetic fieldMassless particleHigh Energy Physics - PhenomenologyHigh Energy Physics - Phenomenology (hep-ph)PulsarMeasurements of neutrino speedHigh Energy Physics::ExperimentNeutrinoNeutrino oscillationLepton
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IMPROVED BOUNDS ON THE TAU MAGNETIC MOMENTS

2001

New limits on the tau magnetic couplings to the photon, the Z and the W bosons are obtained from the most general effective Lagrangian. Model independent bounds are set using data for tau pair production and W decay into tau leptons at LEP1, LEP2, SLD and hadron colliders. For the anomalous magnetic moment the bounds are, for the first time, of the order of magnitude of the standard model prediction.

PhysicsNuclear and High Energy PhysicsParticle physicsNeutron magnetic momentAnomalous magnetic dipole momentHigh Energy Physics::PhenomenologyAstronomy and AstrophysicsElectron magnetic dipole momentAtomic and Molecular Physics and OpticsStandard ModelSpin magnetic momentPair productionHigh Energy Physics::ExperimentMagnetic dipoleLeptonInternational Journal of Modern Physics A
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Unitary model for theγp→γπ0preaction and the magnetic dipole moment of theΔ+(1232)

2005

Radiative pion photoproduction in the $\ensuremath{\Delta}(1232)$-resonance region is studied with the aim of accessing the ${\ensuremath{\Delta}}^{+}(1232)$ magnetic dipole moment. We present a unitary model of the $\ensuremath{\gamma}p\ensuremath{\rightarrow}\ensuremath{\gamma}\ensuremath{\pi}N$ ($\ensuremath{\pi}N={\ensuremath{\pi}}^{0}p,\phantom{\rule{0.6em}{0ex}}{\ensuremath{\pi}}^{+}n$) reactions, where the $\ensuremath{\pi}N$ rescattering is included in an onshell approximation. In this model, the low-energy theorem which couples the $\ensuremath{\gamma}p\ensuremath{\rightarrow}\ensuremath{\gamma}\ensuremath{\pi}N$ process in the limit of a soft final photon to the $\ensuremath{\gamm…

PhysicsNuclear and High Energy PhysicsParticle physicsPionUnitarityMagnetic momentResonanceSensitivity (control systems)Atomic physicsPhoton energyHelicityEnergy (signal processing)Physical Review C
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Polarization in fragmentation,gfactor of35K

1998

Spin polarization $Pg1%$ has been observed for ${}^{37}\mathrm{K}$ fragments produced in the reaction ${}^{40}\mathrm{Ca}{+}^{9}\mathrm{Be}$ at 500 MeV/nucleon. The polarization was measured as a function of fragment longitudinal momentum (Goldhaber distribution). The experimental results are well described by a new Monte Carlo\char21{}based model. The $\ensuremath{\beta}$-decay half-life of ${}^{35}\mathrm{K}$ was remeasured as ${t}_{1/2}=178(8)$ ms. Using polarized ${}^{35}\mathrm{K}$ fragments, the $g$ factor ${g}_{\mathrm{exp}}{(}^{35}\mathrm{K})=0.24(2)$ was measured. The magnetic moments of isospin $|{T}_{z}|=3/2$ mirror pairs are discussed.

PhysicsNuclear and High Energy PhysicsParticle physicsSpin polarizationMagnetic moment010308 nuclear & particles physicsPolarization (waves)01 natural sciencesFragmentation (mass spectrometry)Isospin0103 physical sciencesAtomic physicsNuclear Experiment010306 general physicsNucleonPhysical Review C
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