NSR Query Results


Output year order : Descending
Format : Normal

NSR database version of April 29, 2024.

Search: Author = P.McGlynn

Found 3 matches.

Back to query form



2023MC02      Phys.Rev. C 107, 054614 (2023)

P.McGlynn, C.Simenel

Time-dependent Hartree-Fock study of quasifission trajectories in reactions forming 294Og

NUCLEAR STRUCTURE 294Og; calculated zero-temperature potential energy surface. Calculations using the static Hartree-Fock + BCS code SKYAX.

NUCLEAR REACTIONS 246Cf(48Ca, X)294Og, E(cm)=180-242; 208Pb(86Kr, X)294Og, E(cm)=324-629; 168Er(126Sn, X)294Og, E(cm)=306-611 MeV; calculated total kinetic energies of the fission fragments, proton and neutron numbers of the final (light) primary fragments, contact time, quasifission trajectories. Time-dependent Hartree-Fock (TDHF) calculations.

doi: 10.1103/PhysRevC.107.054614
Citations: PlumX Metrics


2021CO11      Phys.Rev. C 104, 024620 (2021)

K.J.Cook, A.Chevis, T.K.Eriksen, E.C.Simpson, T.Kibedi, L.T.Bezzina, A.C.Berriman, J.Buete, I.P.Carter, M.Dasgupta, D.J.Hinde, D.Y.Jeung, P.McGlynn, S.Parker-Steele, B.M.A.Swinton-Bland, T.Tanaka, W.Wojtaczka

High-precision proton angular distribution measurements of 12C (p, p') for the decay branching ratio of the Hoyle state

NUCLEAR REACTIONS 12C(p, p'), E=10.20-10.70 MeV from 14UD electrostatic accelerator at HIAF-ANU facility; measured E(p), I(p), p(θ), differential σ(θ, E) for the first 2+ and second 0+ (Hoyle) state using the Breakup Array for Light Nuclei (BALiN) array of wedge shaped segmented double-sided silicon detectors (DSSDs), configured as two ΔE-E telescopes; deduced total σ(E) for the population of the first 2+ and second 0+ (Hoyle) state in 12C, thick target yields. Discussed radiative width of the Hoyle state, and possible application of measured cross sections for investigating cluster structures in 13N. Relevance to rate of carbon production in stars via radiative decay of the Hoyle state.

doi: 10.1103/PhysRevC.104.024620
Citations: PlumX Metrics

Data from this article have been entered in the EXFOR database. For more information, access X4 datasetD1006.


2020MC03      Phys.Rev. C 102, 064614 (2020)

P.McGlynn, C.Simenel

Imaginary-time mean-field method for collective tunneling

doi: 10.1103/PhysRevC.102.064614
Citations: PlumX Metrics


Back to query form