Search results for "Nuclear fission"

showing 4 items of 44 documents

Evidence for intruder states in111Rh

1990

Levels in111Rh have been investigated via the γ -rays following the β−-decay of 2.1 s111Ru. The Ru activity was produced in the fission of249Cf and separated chemically from the fission product mixture. The emitted γ-rays were studied by γ singles and γ(t) coincidence measurements. Evidence for intruder states in111Rh has been obtained. Their properties are discussed and compared with those in the lighter Rh isotopes.

PhysicsNuclear physicsNuclear and High Energy PhysicsNuclear fission productIsotopeFissionNuclear fusionCoincidenceZeitschrift f�r Physik A Atomic Nuclei
researchProduct

From Nuclear Fission to Superheavy Elements

1998

(1998). From Nuclear Fission to Superheavy Elements. Nuclear Physics News: Vol. 8, No. 2, pp. 7-21.

PhysicsNuclear physicsNuclear and High Energy PhysicsNuclear fissionSuperheavy ElementsNuclear Physics News
researchProduct

The decay of105Tc to levels in105Ru

1975

Theβ−-decay of 7.6-min105Tc has been investigated byβ- andγ-ray singles and coincidence measurements. The activities have been produced by thermal-neutron-induced fission of235U or239Pu and subsequent chemical separation of the technetium fraction from the fission product mixture. AQβ-value of 3.2±0.2 MeV has been determined. In a delayed coincidence experiment the lifetime of the first excited state in105Ru at 20.55 keV has been measured to be 340±15 nsec. A level scheme of105Ru is proposed and compared with the results of recent nuclear reaction studies like104Ru(d, p) and104Ru(n, γ). From beta branching ratios to levels in105Ru, ground state spin and parity of 5/2+ can be suggested for10…

PhysicsNuclear reactionNuclear and High Energy PhysicsNuclear fission productchemistryFissionExcited statechemistry.chemical_elementNeutronAtomic physicsTechnetiumGround stateIsotopes of technetiumZeitschrift f�r Physik A Atoms and Nuclei
researchProduct

Contribution of recently measured nuclear data to reactor antineutrino energy spectra predictions

2013

This paper attempts to summarize the actual problematic of reactor antineutrino energy spectra in the frame of fundamental and applied neutrino physics. Nuclear physics is an important ingredient of reactor antineutrino experiments. These experiments are motivated by neutrino oscillations, i.e. the measure of the θ 13 mixing angle. In 2011, after a new computation of the reactor antineutrino energy spectra, based on the conversion of integral data of the beta spectra from 235 U, and 239;241 Pu, a deficit of reactor antineutrinos measured by short baseline experiments was pointed out. This is called the “reactor anomaly”, a new puzzle in the neutrino physics area. Since then, numerous new ex…

Semileptonic decayParticle physicsNuclear and High Energy PhysicsNuclear fission product[PHYS.ASTR.IM]Physics [physics]/Astrophysics [astro-ph]/Instrumentation and Methods for Astrophysic [astro-ph.IM]FissionQC1-99901 natural sciences7. Clean energyPhysics::GeophysicsNuclear physics0103 physical sciencesPlutonium-241010306 general physicsNeutrino oscillationNuclear ExperimentPhysicsFission products010308 nuclear & particles physicsPhysicsNuclear dataBeta decay[SDU.ASTR.IM]Sciences of the Universe [physics]/Astrophysics [astro-ph]/Instrumentation and Methods for Astrophysic [astro-ph.IM]Uranium-238Uranium-235High Energy Physics::ExperimentAnomaly (physics)NeutrinoEPJ Web of Conferences
researchProduct