Search results for "Nucleon"

showing 10 items of 1041 documents

Peripheral nucleon-nucleon phase shifts and chiral symmetry

1997

Within the one-loop approximation of baryon chiral perturbation theory we calculate all one-pion and two-pion exchange contributions to the nucleon-nucleon interaction. In fact we construct the elastic NN-scattering amplitude up to and including third order in small momenta. The phase shifts with orbital angular momentum $L\geq2 $ and the mixing angles with $J\geq2$ are given parameterfree and thus allow for a detailed test of chiral symmetry in the two-nucleon system. We find that for the D-waves the $2\pi$-exchange corrections are too large as compared with empirical phase shifts, signaling the increasing importance of shorter range effects in lower partial waves. For higher partial waves…

PhysicsNuclear and High Energy PhysicsAngular momentumChiral perturbation theoryNuclear TheoryNuclear TheoryPhase (waves)FOS: Physical sciencesNuclear Theory (nucl-th)BaryonHigh Energy Physics - PhenomenologyHigh Energy Physics - Phenomenology (hep-ph)AmplitudeQuantum electrodynamicsCoordinate spaceNuclear ExperimentNucleonMixing (physics)Nuclear Physics A
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Unsubtracted dispersion-relation for longitudinal compton amplitude

1975

Abstract It is shown that there is a simple connection between the slope, at q2 = 0, of the longitudinal Compton amplitude and the electric polarizability of the nucleon. The longitudinal subtraction function is thus known to order q2. The assumption of an unsubtracted dispersion relation for the longitudinal amplitude leads to a sum rule for the electric polarizability. This is a model independent test of the high-energy behaviour of the forward virtual Compton amplitude.

PhysicsNuclear and High Energy PhysicsAngular momentumFísicaSchrödinger equationsymbols.namesakeAmplitudePolarizabilityQuantum mechanicsDispersion relationQuantum electrodynamicssymbolsSum rule in quantum mechanicsNucleonWave functionParticle Physics - Theory
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Additivity of effective quadrupole moments and angular momentum alignments in the A~130 nuclei

2007

The additivity principle of the extreme shell model stipulates that an average value of a one-body operator be equal to the sum of the core contribution and effective contributions of valence (particle or hole) nucleons. For quadrupole moment and angular momentum operators, we test this principle for highly and superdeformed rotational bands in the A~130 nuclei. Calculations are done in the self-consistent cranked non-relativistic Hartree-Fock and relativistic Hartree mean-field approaches. Results indicate that the additivity principle is a valid concept that justifies the use of an extreme single-particle model in an unpaired regime typical of high angular momenta.

PhysicsNuclear and High Energy PhysicsAngular momentumValence (chemistry)Nuclear TheorySHELL modelNuclear TheoryFOS: Physical sciencesHartreeNuclear Theory (nucl-th)Additive functionQuantum electrodynamicsQuadrupolePhysics::Atomic and Molecular ClustersAngular momentum operatorNucleon
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Spin and magnetic moment of23Mg

2017

A negative magnetic moment of 23Mg has been determined by collinear laser spectroscopy at CERN-ISOLDE. The absolute value is in agreement with previous measurements by nuclear magnetic resonance while the sign points at high-seniority configurations. The result is consistent with shell-model predictions for nuclei with valence nucleons in the sd shell. ispartof: Journal of Physics G, Nuclear and Particle Physics vol:44 issue:7 status: published

PhysicsNuclear and High Energy PhysicsAngular momentumValence (chemistry)[PHYS.NUCL]Physics [physics]/Nuclear Theory [nucl-th]Magnetic moment010308 nuclear & particles physicsNuclear TheoryHadronElementary particleFermion01 natural sciencesNuclear magnetic resonance0103 physical sciencesPhysics::Atomic and Molecular ClustersPräzisionsexperimente - Abteilung BlaumAtomic physicsNuclear Experiment010306 general physicsNucleonSpectroscopyJournal of Physics G: Nuclear and Particle Physics
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Performance studies of the P¯ANDA planar GEM-tracking detector in physics simulations

2018

Abstract The P ¯ ANDA experiment will be installed at the future facility for antiproton and ion research (FAIR) in Darmstadt, Germany, to study events from the annihilation of protons and antiprotons. The P ¯ ANDA detectors can cover a wide physics program about baryon spectroscopy and nucleon structure as well as the study of hadrons and hypernuclear physics including the study of excited hyperon states. One very specific feature of most hyperon ground states is the long decay length of several centimeters in the forward direction. The central tracking detectors of the P ¯ ANDA setup are not sufficiently optimized for these long decay lengths. Therefore, using a set of the planar GEM-trac…

PhysicsNuclear and High Energy PhysicsAnnihilation010308 nuclear & particles physicsNuclear TheoryHadronHyperon01 natural sciencesBaryonNuclear physicsAntiproton0103 physical sciencesGas electron multiplierFacility for Antiproton and Ion ResearchHigh Energy Physics::ExperimentNuclear Experiment010306 general physicsNucleonInstrumentationNuclear Instruments and Methods in Physics Research Section A: Accelerators, Spectrometers, Detectors and Associated Equipment
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Neutron to mirror-neutron oscillations in the presence of mirror magnetic fields

2009

We performed ultracold neutron (UCN) storage measurements to search for additional losses due to neutron (n) to mirror-neutron (n') oscillations as a function of an applied magnetic field B. In the presence of a mirror magnetic field B', UCN losses would be maximal for B = B'. We did not observe any indication for nn' oscillations and placed a lower limit on the oscillation time of tau_{nn'} > 12.0 s at 95% C.L. for any B' between 0 and 12.5 uT.

PhysicsNuclear and High Energy PhysicsAntiparticle010308 nuclear & particles physicsOscillationAstrophysics::High Energy Astrophysical PhenomenaFOS: Physical sciencesHardware_PERFORMANCEANDRELIABILITYFermion[PHYS.NEXP]Physics [physics]/Nuclear Experiment [nucl-ex]01 natural sciences3. Good healthMagnetic fieldNuclear physicsTheoryofComputation_ANALYSISOFALGORITHMSANDPROBLEMCOMPLEXITYAntimatter0103 physical sciencesUltracold neutronsNeutronNuclear Experiment (nucl-ex)010306 general physicsNucleonNuclear ExperimentNuclear Experiment
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Nuclear structure “southeast” ofPb208: Isomeric states inHg208andTl209

2009

The nuclear structure of neutron-rich N>126 nuclei has been investigated following their production via relativistic projectile fragmentation of a E/A=1 GeV U-238 beam. Metastable states in the N=128 isotones Hg-208 and Tl-209 have been identified. Delayed gamma-ray transitions are interpreted as arising from the decay of I-pi=(8(+)) and (17/2(+)) isomers, respectively. The data allow for the so far most comprehensive verification of the shell-model approach in the region determined by magic numbers Z 126.

PhysicsNuclear and High Energy PhysicsAstrophysics::High Energy Astrophysical PhenomenaNuclear TheoryHadronNuclear structureBaryonNuclear physicsUranium-238Excited stateMetastabilityNeutronAtomic physicsNuclear ExperimentNucleonPhysical Review C
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Recent developments in effective field theory

2007

We will give a short introduction to the one-nucleon sector of chiral perturbation theory and will address the issue of a consistent power counting and renormalization. We will discuss the infrared regularization and the extended on-mass-shell scheme. Both allow for the inclusion of further degrees of freedom beyond pions and nucleons and the application to higher-loop calculations. As applications we consider the chiral expansion of the nucleon mass to order O(q^6) and the inclusion of vector and axial-vector mesons in the calculation of nucleon form factors.

PhysicsNuclear and High Energy PhysicsChiral perturbation theoryMesonNuclear TheoryHigh Energy Physics::LatticeNuclear TheoryDegrees of freedom (statistics)FOS: Physical sciencesRenormalizationNuclear Theory (nucl-th)Theoretical physicsPionRegularization (physics)Effective field theoryNucleonNuclear Experiment
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Virtual Compton scattering off the nucleon in chiral perturbation theory

1996

We investigate the spin-independent part of the virtual Compton scattering (VCS) amplitude off the nucleon within the framework of chiral perturbation theory. We perform a consistent calculation to third order in external momenta according to Weinberg's power counting. With this calculation we can determine the second- and fourth-order structure-dependent coefficients of the general low-energy expansion of the spin-averaged VCS amplitude based on gauge invariance, crossing symmetry and the discrete symmetries. We discuss the kinematical regime to which our calculation can be applied and compare our expansion with the multipole expansion by Guichon, Liu and Thomas. We establish the connectio…

PhysicsNuclear and High Energy PhysicsChiral perturbation theoryNuclear TheoryCrossingCompton scatteringFOS: Physical sciencesNuclear Theory (nucl-th)Scattering amplitudeHigh Energy Physics - PhenomenologyHigh Energy Physics - Phenomenology (hep-ph)AmplitudeQuantum electrodynamicsGauge theoryNucleonMultipole expansionPhysical Review D
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Gerasimov-Drell-Hearn sum rule and related integrals

2001

The spin structure of the nucleon resonance region is analyzed on the basis of our phenomenological model MAID. Predictions are given for the Gerasimov-Drell-Hearn sum rule as well as generalized integrals over spin structure functions. The dependence of these integrals on momentum transfer is studied and rigorous relationships between various definitions of generalized Gerasimov-Drell-Hearn integrals and spin polarizabilities are derived. These results are compared to the predictions of chiral perturbation theory and phenomenological models.

PhysicsNuclear and High Energy PhysicsChiral perturbation theoryNuclear TheoryMomentum transferResonance (particle physics)Quantum electrodynamicsSlater integralsPhenomenological modelHigh Energy Physics::ExperimentSum rule in quantum mechanicsNuclear ExperimentNucleonMathematical physicsSpin-½Physical Review D
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