Search results for "UNITARITY"

showing 10 items of 245 documents

PINGU: a vision for neutrino and particle physics at the South Pole

2017

The Precision IceCube Next Generation Upgrade (PINGU) is a proposed low-energy in-fill extension to the IceCube Neutrino Observatory. With detection technology modeled closely on the successful IceCube example, PINGU will provide a 6Mton effective mass for neutrino detection with an energy threshold of a few GeV. With an unprecedented sample of over 60,000 atmospheric neutrinos per year in this energy range, PINGU will make highly competitive measurements of neutrino oscillation parameters in an energy range over an order of magnitude higher than long-baseline neutrino beam experiments. PINGU will measure the mixing parameters $\theta_{\rm 23}$ and $\Delta m^2_{\rm 32}$, including the octan…

Physics - Instrumentation and DetectorsPhysics::Instrumentation and Detectorsmixing [neutrino]atmospheric neutrinos; IceCube Neutrino Observatory; neutrino oscillations; PINGU; Nuclear and High Energy Physicspole7. Clean energy01 natural sciencesPINGUIceCube Neutrino ObservatoryIceCubeHigh Energy Physics - ExperimentObservatoryPhysicssolar [WIMP]precision measurementAstrophysics::Instrumentation and Methods for Astrophysicsoscillation [neutrino]solar [dark matter]atmosphere [neutrino]threshold [energy]mass difference [neutrino]atmospheric neutrinosobservatoryHigh Energy Physics - PhenomenologyUpgradeNeutrino detectorupgradeNeutrinoKM3NETperformanceParticle physicsNuclear and High Energy Physicssupernova [neutrino]particle identification [neutrino/tau]Astrophysics::High Energy Astrophysical PhenomenaSUPERNOVA DETECTIONIceCube Neutrino Observatory0103 physical sciencesOSCILLATIONSmass: low [dark matter]unitarityddc:530010306 general physicsNeutrino oscillationneutrino oscillations010308 nuclear & particles physicsAstronomysensitivityKM3NeTPhysics and Astronomymass [neutrino]beam [neutrino]High Energy Physics::ExperimentgalaxyATMOSPHERIC NEUTRINOSMATTERSYSTEMLeptonmixing angle [neutrino]experimental results
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Radiative decay of theΛ*(1520)

2006

A recently developed nonperturbative chiral approach to dynamically generate the 3/2{sup -} baryon resonances has been extended to investigate the radiative decays {lambda}*(1520){yields}{gamma}{lambda}(1116) and {lambda}*(1520){yields}{gamma}{sigma}{sup 0}(1193). We show that the {lambda}*(1520) decay into {gamma}{lambda} is an ideal test for the need of extra components of the resonance beyond those provided by the chiral approach since the largest meson-baryon components give no contribution to this decay. The case is different for {gamma}{sigma} decay, where the theory agrees with experiment, though the large uncertainties of these data call for more precise measurements. Some estimates…

PhysicsBaryonNuclear and High Energy PhysicsParticle physicsMesonUnitarityPartial wave analysisResonanceLambda baryonLambdaSigma baryonPhysical Review C
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Chiral approach to antikaons- andp-wave interactions in dense nuclear matter

2006

The properties of the antikaons in nuclear matter are investigated from a chiral unitary approach which incorporates the $s$- and $p$-waves of the $\overline{K}N$ interaction. To obtain the in-medium meson-baryon amplitudes we include, in a self-consistent way, Pauli blocking effects, meson self-energies corrected by nuclear short-range correlations and baryon binding potentials. We pay special attention to investigating the validity of the on-shell factorization, showing that it cannot be applied in the evaluation of the in-medium corrections to the $p$-wave amplitudes. In nuclear matter at saturation energy, the \ensuremath{\Lambda} and \ensuremath{\Sigma} develop an attractive potential …

PhysicsBaryonNuclear and High Energy PhysicsParticle physicsUnitarityMesonNuclear TheoryBound stateHyperonSaturation (graph theory)Nuclear ExperimentNuclear matterEnergy (signal processing)Physical Review C
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Improved unitarized heavy baryon chiral perturbation theory for πN scattering to fourth order

2004

We extend our previous analysis of the unitarized pion-nucleon scattering amplitude including up to fourth order terms in heavy baryon chiral perturbation theory. We pay special attention to the stability of the generated Delta(1232) resonance, the convergence problems, and the power counting of the chiral parameters.

PhysicsChiral anomalyNuclear and High Energy PhysicsParticle physicsChiral perturbation theoryFísica-Modelos matemáticosUnitarityHeavy baryon chiral perturbation theoryScatteringPartial wave analysisHigh Energy Physics::LatticeNuclear TheoryHigh Energy Physics::PhenomenologyFísicaResonance (particle physics)Scattering amplitudeQuantum electrodynamicsFísica matemáticaNuclear Experiment
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Meson-Baryon Interactions in Unitarized Chiral Perturbation Theory

2002

Meson-Baryon Interactions can be successfully described using both Chiral Symmetry and Unitarity. The $s-$wave meson-baryon scattering amplitude is analyzed in a Bethe-Salpeter coupled channel formalism incorporating Chiral Symmetry in the potential. Two body coupled channel unitarity is exactly preserved. The needed two particle irreducible matrix amplitude is taken from lowest order Chiral Perturbation Theory in a relativistic formalism. Off-shell behavior is parameterized in terms of low energy constants. The relation to the heavy baryon limit is discussed. The position of the complex poles in the second Riemann sheet of the scattering amplitude determine masses and widths baryonic reson…

PhysicsChiral perturbation theoryNuclear TheoryMesonUnitarityNuclear TheoryHigh Energy Physics::PhenomenologyFOS: Physical sciencesLambdaBaryonScattering amplitudeNuclear Theory (nucl-th)Riemann hypothesissymbols.namesakeAmplitudesymbolsNuclear ExperimentMathematical physics
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Shaking the entropy out of a lattice:atomic filtering by vibrational excitations

2012

We present a simple and efficient scheme to reduce atom-number fluctuations in optical lattices. The interaction-energy difference for atoms in different vibrational states is used to remove excess atomic occupation. The remaining vacant sites are then filled with atoms by merging adjacent wells, for which we implement a protocol that circumvents the constraints of unitarity. The preparation of large regions with precisely one atom per lattice site is discussed for both bosons and fermions. The resulting low-entropy Mott-insulating states may serve as high-fidelity register states for quantum computing and as a starting point for investigations of many-body physics.

PhysicsCondensed Matter::Quantum GasesQuantum PhysicsOptical latticeUnitarityCluster stateFOS: Physical sciencesFermion01 natural sciencesAtomic and Molecular Physics and Optics010305 fluids & plasmasquant-phQuantum Gases (cond-mat.quant-gas)Lattice (order)Quantum mechanics0103 physical sciencesAtomAtomic physicsCondensed Matter - Quantum GasesQuantum Physics (quant-ph)010306 general physicscond-mat.quant-gasQuantum computerBoson
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Penning traps as a versatile tool for precise experiments in fundamental physics

2009

This review article describes the trapping of charged particles. The main principles of electromagnetic confinement of various species from elementary particles to heavy atoms are briefly described. The preparation and manipulation with trapped single particles, as well as methods of frequency measurements, providing unprecedented precision, are discussed. Unique applications of Penning traps in fundamental physics are presented. Ultra-precise trap-measurements of masses and magnetic moments of elementary particles (electrons, positrons, protons and antiprotons) confirm CPT-conservation, and allow accurate determination of the fine-structure constant alpha and other fundamental constants. T…

PhysicsCondensed Matter::Quantum GasesUnitarityAtomic Physics (physics.atom-ph)General Physics and AstronomyFOS: Physical sciencesElementary particleElectronCharged particleAtomic massPhysics - Atomic PhysicsStandard ModelNuclear physicsAntiprotonNuclidePhysics::Atomic PhysicsAtomic physics
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Complex-mass scheme and perturbative unitarity

2012

We derive cutting rules for loop integrals containing propagators with complex masses. Using a field-theoretical model of a heavy vector boson interacting with a light fermion, we demonstrate that the complex-mass scheme respects unitarity order by order in a perturbative expansion provided that the renormalized coupling constant remains real.

PhysicsCoupling constantCondensed Matter::Quantum GasesHigh Energy Physics - TheoryNuclear and High Energy PhysicsUnitarityOrder (ring theory)PropagatorFOS: Physical sciencesAstronomy and AstrophysicsFermionAtomic and Molecular Physics and OpticsVector bosonRenormalizationHigh Energy Physics - PhenomenologyHigh Energy Physics - Phenomenology (hep-ph)High Energy Physics - Theory (hep-th)Scheme (mathematics)Mathematical physics
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Unitarity, Becchi-Rouet-Stora-Tyutin symmetry, and Ward identities in orbifold gauge theories

2004

We discuss the use of BRST symmetry and the resulting Ward identities as consistency checks for orbifold gauge theories in an arbitrary number of dimensions. We demonstrate that both the usual orbifold symmetry breaking and the recently proposed Higgsless symmetry breaking are consistent with the nilpotency of the BRST transformation. The corresponding Ward identities for four-point functions of the theory engender relations among the coupling constants that are equivalent to the sum rules from tree level unitarity. We present the complete set of these sum rules also for inelastic scattering and discuss applications to six-dimensional models and to incomplete matter multiplets on orbifold f…

PhysicsCoupling constantHigh Energy Physics::TheoryNuclear and High Energy PhysicsTheoretical physicsParticle physicsUnitaritySymmetry breakingGauge theoryFixed pointOrbifoldSymmetry (physics)BRST quantizationPhysical Review D
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Form factors for semileptonic B -> pi and D -> pi decays from the Omnes representation

2000

We use the Omnes representation to obtain the q-squared dependence of the form factors f+ and f0 for semileptonic H -> pi decays from the elastic pi H -> pi H scattering amplitudes, where H denotes a B or D meson. The scattering amplitudes used satisfy elastic unitarity and are calculated from two-particle irreducible amplitudes obtained using tree-level heavy meson chiral perturbation theory (HMChPT). The q-squared dependences for the form factors agree with lattice QCD results when the HMChPT coupling constant, g, takes values smaller than 0.32, and confirm the milder dependence of f0 on q-squared found in sumrule calculations.

PhysicsCoupling constantNuclear and High Energy PhysicsParticle physicsChiral perturbation theoryUnitarityMesonHigh Energy Physics::PhenomenologyFísicaLattice QCDScattering amplitudeHigh Energy Physics - PhenomenologyAmplitudeHigh Energy Physics - LatticeD mesonHigh Energy Physics::Experiment
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