Search results for "Proton"

showing 10 items of 5886 documents

First Measurement of the Gerasimov-Drell-Hearn Sum Rule forH1from 0.7 to 1.8 GeV at ELSA

2003

To verify the fundamental Gerasimov-Drell-Hearn (GDH) sum rule for the first time experimentally, we measured the helicity dependent total photoabsorption cross section with circularly polarized real photons and longitudinally polarized nucleons in the photon energy range 0.68-1.82 GeV with the tagged photon facility at ELSA. The experiment was carried out with a 4pi detection system, a circularly polarized tagged photon beam, and a frozen spin polarized proton target. The contribution to the GDH sum rule in this photon energy range is [49.9+/-2.4(stat)+/-2.2(syst)] mub.

PhysicsParticle physicsRange (particle radiation)PhotonProton010308 nuclear & particles physicsNuclear TheoryGeneral Physics and AstronomyPhoton energy01 natural sciencesHelicityNuclear physics0103 physical sciencesHigh Energy Physics::ExperimentSum rule in quantum mechanicsNuclear Experiment010306 general physicsNucleonSpin-½Physical Review Letters
researchProduct

The Barrel DIRC of PANDA

2012

Cooled antiproton beams of unprecedented intensities in the momentum range of 1.5-15 GeV/c will be used for the PANDA experiment at FAIR to perform high precision experiments in the charmed quark sector. The PANDA detector will investigate antiproton annihilations with beams in the momentum range of 1.5 GeV/c to 15 GeV/c on a fixed target. An almost 4π acceptance double spectrometer is divided in a forward spectrometer and a target spectrometer. The charged particle identification in the latter is performed by ring imaging Cherenkov counters employing the DIRC principle.

PhysicsParticle physicsRange (particle radiation)SpectrometerPhysics::Instrumentation and Detectors010308 nuclear & particles physicsDetector01 natural sciences7. Clean energyCharged particleCharm quarkMomentumNuclear physicsAntiproton0103 physical sciencesHigh Energy Physics::ExperimentNuclear Experiment010306 general physicsInstrumentationMathematical PhysicsCherenkov radiationJournal of Instrumentation
researchProduct

Structure and prospects of the simplest SO(10) GUTs

2012

We recapitulate the latest results on the class of the simplest SO(10) grand unified models in which the GUT-scale symmetry breaking is triggered by an adjoint Higgs representation. We argue that the minimal survival approximation traditionally used in the GUT- and seesaw-scale estimates tends to be blind to very interesting parts of the parameter space in which some of the intermediate-scale states necessary for non-supersymmetric unification of the SM gauge couplings can be as light as to leave their imprints in the TeV domain. The stringent minimal-survival-based estimates of the B-L scale are shown to be relaxed by as much as four orders of magnitude, thus admitting for a consistent imp…

PhysicsParticle physicsSO(10)010308 nuclear & particles physicsProton decayHigh Energy Physics::PhenomenologyGrand unification; Neutrino masses; SO(10)Structure (category theory)FOS: Physical sciencesNeutrino massesParameter space01 natural sciencesHigh Energy Physics - PhenomenologyHigh Energy Physics - Phenomenology (hep-ph)Seesaw mechanismOrders of magnitude (time)Grand unification0103 physical sciencesHiggs bosonSymmetry breakingSO(10)010306 general physics
researchProduct

Sum rules across the unpolarized Compton processes involving generalized polarizabilities and moments of nucleon structure functions

2018

We derive two new sum rules for the unpolarized doubly virtual Compton scattering process on a nucleon, which establish novel low-$Q^2$ relations involving the nucleon's generalized polarizabilities and moments of the nucleon's unpolarized structure functions $F_1(x,Q^2)$ and $F_2(x,Q^2)$. These relations facilitate the determination of some structure constants which can only be accessed in off-forward doubly virtual Compton scattering, not experimentally accessible at present. We perform an empirical determination for the proton and compare our results with a next-to-leading-order chiral perturbation theory prediction. We also show how these relations may be useful for a model-independent …

PhysicsParticle physicsStructure constantsChiral perturbation theoryProtonNuclear Theory010308 nuclear & particles physics530 PhysicsCompton scatteringFOS: Physical sciences01 natural sciences530Lamb shiftNuclear Theory (nucl-th)High Energy Physics - PhenomenologyHigh Energy Physics - Phenomenology (hep-ph)Polarizability0103 physical sciencesddc:530Sum rule in quantum mechanicsPhysics::Atomic PhysicsNuclear Experiment (nucl-ex)010306 general physicsNucleonNuclear Experiment
researchProduct

Towards a New Minimal SO(10) Unification

2012

We argue that non-supersymmetric SO(10) models based on a renormalizable Higgs sector in which spontaneous symmetry breaking is triggered by the VEVs of a 45-dimensional adjoint and a 126-dimensional tensor representations can provide a potentially realistic yet relatively simple framework for a future robust estimate of the proton lifetime. Following closely the work Phys.Rev.D85, 095014 (2012), arXiv: 1202.0807 [hep-ph] we comment on the gauge unification constraints on the B-L breaking scale and show that there are several regions in the parameter space of the minimal model where the seesaw scale in the phenomenologically favoured ballpark of around 10^13-14 GeV is consistently supported.

PhysicsParticle physicsUnification010308 nuclear & particles physicsseesaw mechanismSpontaneous symmetry breakingbaryon and lepton number violationHigh Energy Physics::PhenomenologyFOS: Physical sciencesParameter spacebaryon and lepton number violation; proton decay; seesaw mechanism; SO(10) Grand Unification01 natural sciencesSO(10) Grand UnificationHiggs sectorMinimal modelproton decayHigh Energy Physics - PhenomenologyHigh Energy Physics - Phenomenology (hep-ph)Seesaw molecular geometry0103 physical sciencesTensorSO(10)010306 general physics
researchProduct

Isospin mixing in nuclei within the nuclear density functional theory.

2009

We present the self-consistent, non-perturbative analysis of isospin mixing using the nuclear density functional approach and the rediagonalization of the Coulomb interaction in the good-isospin basis. The largest isospin-breaking effects are predicted for N = Z nuclei and they quickly fall with the neutron excess. The unphysical isospin violation on the mean-field level, caused by the neutron excess, is eliminated by the proposed method. We find a significant dependence of the magnitude of isospin breaking on the parametrization of the nuclear interaction term. A rough correlation has been found between the isospin mixing parameter and the difference of proton and neutron rms radii. The th…

PhysicsParticle physicsWeak isospinProtonNuclear TheoryHigh Energy Physics::PhenomenologyNuclear TheoryFOS: Physical sciencesGeneral Physics and AstronomyNuclear matterNuclear Theory (nucl-th)Nuclear physicsIsospinCoulombNeutronSymmetry breakingNuclear ExperimentNuclear densityPhysical review letters
researchProduct

Single inclusive hadron production in pA collisions at NLO

2016

We study single inclusive forward hadron production in high energy proton-nucleus collisions at next-to-leading order in the Color Glass Condensate framework. Recent studies have shown that the next-to-leading order corrections to this process are large and negative at large transverse momentum, leading to negative cross sections. We propose to overcome this difficulty by introducing an explicit rapidity factorization scale when subtracting the rapidity divergence into the evolution of the target.

PhysicsParticle physicshadron productionScale (ratio)Nuclear Theoryhigh energy proton-nucleus collisionsHadronFOS: Physical sciencesColor-glass condensateNuclear physicsNuclear Theory (nucl-th)High Energy Physics - PhenomenologyHigh Energy Physics - Phenomenology (hep-ph)FactorizationTransverse momentumProduction (economics)RapidityDivergence (statistics)Nuclear Experiment
researchProduct

Dark Matter in Leptoquark Portal

2021

A beyond the standard model portal scenario for Majorana fermion dark matter (DM) particle with leptoquark being the mediator field is of the main focus of this study. We explore the parameter space of the only unknown coupling in the model which is sensitive to all three main features of a DM model, namely, relic density, direct detection as well as indirect detection, while being consistent with the collider searches. The AMS-02 data for antiproton flux imposes stringent bound till date which excludes the DM mass up to \(400\,\)GeV at 95% C.L. The LUX 2016 data for DM-neutron scattering cross section allows the region compatible with relic density; however, the future sensitivity of LZ ex…

PhysicsParticle physicslawAntiprotonPhysics beyond the Standard ModelDark matterLeptoquarkParameter spaceColliderCoupling (probability)law.inventionMajorana fermion
researchProduct

Forward J/ψ production at high energy: Centrality dependence and mean transverse momentum

2016

Forward rapidity $J/\psi$ meson production in proton-nucleus collisions can be an important constraint of descriptions of the small-$x$ nuclear wavefunction. In an earlier work we studied this process using a dipole cross section satisfying the Balitsky-Kovchegov equation, fit to HERA inclusive data and consistently extrapolated to the nuclear case using a standard Woods-Saxon distribution. In this paper we present further calculations of these cross sections, studying the mean transverse momentum of the meson and the dependence on collision centrality. We also extend the calculation to backward rapidities using nuclear parton distribution functions. We show that the parametrization is over…

PhysicsParticle physicsta114Nuclear TheoryMeson010308 nuclear & particles physicsNuclear TheoryPartonHERA01 natural sciencesGluonNuclear physicsJ/psi mesonsHigh Energy Physics - PhenomenologyDistribution function0103 physical sciencesHigh Energy Physics::ExperimentRapidityproton-nucleus collisionsNuclear Experiment010306 general physicsNucleonWave functionPhysical Review D
researchProduct

Antiferroelectric phase transition inRb3D(SO4)2single crystals studied by87RbNMR

1998

The quadrupole perturbed central transition of the magnetic ${}^{87}\mathrm{Rb}$ resonance was used to study ${\mathrm{Rb}}_{3}{\mathrm{D}(\mathrm{S}\mathrm{O}}_{4}{)}_{2}$ single crystals. Three resonance lines were found at room temperature. This result is in accord with the monoclinic space group reported for these crystals and does not require the previously invoked self-trapped proton states. The number of resonance lines quadruples below the antiferroelectric phase transition near 82 K. From the line splitting the order-parameter exponent of the low-temperature phase was found to be $\ensuremath{\beta}=0.2.$ Spin-lattice relaxation times have been determined in the fully protonated an…

PhysicsPhase transitionCrystallographyCondensed matter physicsProtonPhase (matter)Relaxation (NMR)QuadrupoleExponentResonanceMonoclinic crystal systemPhysical Review B
researchProduct