0000000000758664

AUTHOR

Hong-fei Zhang

showing 3 related works from this author

Spectroscopic factor and proton formation probability for the d3/2 proton emitter 151Lu

2017

The quenching of the experimental spectroscopic factor for proton emission from the short-lived $d_{3/2}$ isomeric state in $^{151m}$Lu was a long-standing problem. In the present work, proton emission from this isomer has been reinvestigated in an experiment at the Accelerator Laboratory of the University of Jyv\"{a}skyl\"{a}. The proton-decay energy and half-life of this isomer were measured to be 1295(5) keV and 15.4(8) $\mu$s, respectively, in agreement with another recent study. These new experimental data can resolve the discrepancy in the spectroscopic factor calculated using the spherical WKB approximation. Using the R-matrix approach it is found that the proton formation probabilit…

Nuclear and High Energy PhysicsWork (thermodynamics)Nuclear TheoryProton3106Proton decayFOS: Physical sciencesProton energy01 natural sciencesproton emitterWKB approximationNuclear Theory (nucl-th)Nuclear physicsA=1510103 physical sciencesrecoil-decay taggingddc:530WKB approximationNuclear Experiment (nucl-ex)spectroscopic factorProton emissionNuclear Experiment010306 general physicsNuclear ExperimentCommon emitterPhysicsQuenching (fluorescence)ta114010308 nuclear & particles physicsSpectroscopic factorProton emitterproton formation probabilitylcsh:QC1-999Proton formation probability3. Good healthRecoil-decay taggingAtomic physicslcsh:PhysicsPhysics Letters B
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Predictions for cold nuclear matter effects in p+Pb collisions at sNN=8.16 TeV

2018

Predictions for cold nuclear matter effects on charged hadrons, identified light hadrons, quarkonium and heavy flavor hadrons, Drell–Yan dileptons, jets, photons, gauge bosons and top quark pairs produced in p +Pb collisions at sNN=8.16 TeV are compiled and, where possible, compared to each other. Predictions of the normalized ratios of p +Pb to p+p cross sections are also presented for most of the observables, providing new insights into the expected role of cold nuclear matter effects. In particular, the role of nuclear parton distribution functions on particle production can now be probed over a wider range of phase space than ever before.

PhysicsNuclear and High Energy PhysicsGauge bosonTop quark010308 nuclear & particles physicsNuclear TheoryHigh Energy Physics::PhenomenologyHadronDrell–Yan processPerturbative QCDPartonNuclear matterQuarkonium01 natural sciencesNuclear physics0103 physical sciencesHigh Energy Physics::ExperimentNuclear Experiment010306 general physicsNuclear Physics A
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Predictions for cold nuclear matter effects in p+Pb collisions at s N N = 8.16 TeV

Nuclear Physics A
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