Search results for "light nuclei"

showing 4 items of 4 documents

Non-symmetrized Hyperspherical Harmonics Method for Non-equal Mass Three-Body Systems

2018

The non-symmetrized hyperspherical harmonics method for a three-body system, composed by two particles having equal masses, but different from the mass of the third particle, is reviewed and applied to the $^3$H, $^3$He nuclei and $^3_{\Lambda}$H hyper-nucleus, seen respectively as $nnp$, $ppn$ and $NN\Lambda$ three-body systems. The convergence of the method is first tested in order to estimate its accuracy. Then, the difference of binding energy between $^3$H and $^3$He due to the difference of the proton and the neutron masses is studied using several central spin-independent and spin-dependent potentials. Finally, the $^3_{\Lambda}$H hypernucleus binding energy is calculated using diffe…

3HeProtonMaterials Science (miscellaneous)hypertritonBinding energyBiophysicsGeneral Physics and AstronomyLambda01 natural sciencesthree-body systemstriton0103 physical sciencesNeutronhypersperical harmonics methodPhysical and Theoretical Chemistry010306 general physicsMathematical PhysicsMathematical physicsPhysics010308 nuclear & particles physicslight nucleiOrder (ring theory)Hypernucleuslcsh:QC1-999Harmonicslcsh:PhysicsHypertritonFrontiers in Physics
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Implementation of local chiral interactions in the hyperspherical harmonics formalism

2021

With the goal of using chiral interactions at various orders to explore properties of the few-body nuclear systems, we write the recently developed local chiral interactions as spherical irreducible tensors and implement them in the hyperspherical harmonics expansion method. We devote particular attention to three-body forces at next-to-next-to leading order, which play an important role in reproducing experimental data. We check our implementation by benchmarking the ground-state properties of $^3$H, $^3$He and $^4$He against the available Monte Carlo calculations. We then confirm their order-by-order truncation error estimates and further investigate uncertainties in the charge radii obta…

Chiral perturbation theoryNuclear TheoryTruncation error (numerical integration)Formalism (philosophy)Materials Science (miscellaneous)QC1-999Monte Carlo methodBiophysicsGeneral Physics and AstronomyFOS: Physical sciences01 natural scienceschiral effective field theoryNuclear Theory (nucl-th)Theoretical physics0103 physical sciencesPhysical and Theoretical Chemistry010306 general physicsMathematical PhysicsExotic atomPhysics010308 nuclear & particles physicsPhysicsOrder (ring theory)light nucleiCharge (physics)Harmonicshyperspherical harmonicsnuclear interactionsab-initio theory
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New Insight into the Cluster Structure of $^9$Be by Reactions with Deuteron Beam

2018

International audience; Angular distributions of protons, deuterons, tritons, and alpha particles emitted in the reaction 2H+9Be at Elab=19.5, 25, and 35 MeV were measured to study the structure of 9Be, especially to shed light on the internal clusters and possible cluster transfer of 5He. The experiments were performed at sufficiently high energies to ensure suppression of compound nucleus contribution. Thus, the direct reaction mechanism should be mainly responsible for the measured five-nucleon transfer cross section. The analysis suggests a significant contribution of simultaneous five-nucleon transfer in the reaction channel 9Be (d,4He) 7Li.

Physics[PHYS.NUCL]Physics [physics]/Nuclear Theory [nucl-th]DWBAAlpha particle[PHYS.NEXP]Physics [physics]/Nuclear Experiment [nucl-ex]clusters in light nuclei7. Clean energyCross section (physics)medicine.anatomical_structureDeuteriumcoupled channelsmedicineCluster (physics)transfer reactionsoptical modelDirect reactionElastic and inelastic scatteringAtomic physicsNucleusBeam (structure)
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Electromagnetic structure of few-nucleon ground states

2015

Experimental form factors of the hydrogen and helium isotopes, extracted from an up-to-date global analysis of cross sections and polarization observables measured in elastic electron scattering from these systems, are compared to predictions obtained in three different theoretical approaches: the first is based on realistic interactions and currents, including relativistic corrections (labeled as the conventional approach); the second relies on a chiral effective field theory description of the strong and electromagnetic interactions in nuclei (labeled $\chi$EFT); the third utilizes a fully relativistic treatment of nuclear dynamics as implemented in the covariant spectator theory (labeled…

QuarkNuclear and High Energy PhysicsParticle physicsNuclear TheoryNuclear TheoryDegrees of freedom (physics and chemistry)FOS: Physical sciencescharge and magnetic radiiElectromagnetic properties01 natural sciences7. Clean energychiral effective field theoryNuclear Theory (nucl-th)Momentum0103 physical sciencesEffective field theoryCovariant transformationNuclear Experiment (nucl-ex)010306 general physicsform factorsNuclear ExperimentIsotopes of heliumPhysics010308 nuclear & particles physicselectric quadrupole and magnetic dipole momentslight nucleiGluoncharge and magnetic radii; chiral effective field theory; covariant spectator theory; electric quadrupole and magnetic dipole moments; form factors; light nuclei; Nuclear and High Energy Physicscovariant spectator theoryFew-nucleon ground statesNucleonJournal of Physics G: Nuclear and Particle Physics
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