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Jonathan Wilson

Publications and source records attributed to Jonathan Wilson.

2 recordsLinked to original sources

Enhancing European Cooperation in the Search for Dark Matter

The search for dark matter is an exciting topic that is pursued in different communities over a wide range of masses and using a variety of experimental approaches. The result is a strongly correlated matrix of activities across Europe and beyond, both on the experimental and the theoretical side. We suggest to encourage and foster the collaboration of the involved institutions on technical, scientific and organisational level, in order to realise the synergies that are required to increase the impact of dark matter research and to cope with the increasing experiment sizes. The suggested network -- loosely titled "DMInfraNet" -- could be realised as a new initiative of the European strategy or be based on existing structures like iDMEu or DRD. The network can also serve as a nucleus for future joint funding proposals.

hep-ex

Pygmy resonance and low-energy enhancement in the $γ$-ray strength functions of Pd~isotopes

An unexpected enhancement in the $γ$-ray strength function, as compared to the low energy tail of the Giant Dipole Resonance (GDR), has been observed for Sc, Ti, V, Fe and Mo isotopes for $E_γ<4$ MeV. This enhancement was not observed in subsequent analyses on Sn isotopes, but a Pygmy Dipole Resonance (PDR) centered at $E_γ\approx8$ MeV was however detected. The $γ$-ray strength functions measured for Cd isotopes exhibit both features over the range of isotopes, with the low-energy enhancement decreasing- and PDR strength increasing as a function of neutron number. This suggests a transitional region for the onset of low-energy enhancement, and also that the PDR strength depends on the number of neutrons. The $γ$-ray strength functions of $^{105-108}$Pd have been measured in order to further explore the proposed transitional region. Experimental data were obtained at the Oslo Cyclotron Laboratory by using the charged particle reactions ($^{3}$He, $^{3}$He$^{\prime}γ$) and ($^{3}$He, $α$$γ$) on $^{106,108}$Pd target foils. Particle$-γ$ coincidence measurements provided information on initial excitation energies and the corresponding $γ$-ray spectra, which were used to extract the level densities and $γ$-ray strength functions according to the Oslo method. The $γ$-ray strength functions indicate a sudden increase in magnitude for $E_γ>4$ MeV, which is interpreted as a PDR centered at $E_γ\approx8$ MeV. An enhanced $γ$-ray strength at low energies is also observed for $^{105}$Pd, which is the lightest isotope measured in this work. Further, the results correspond and agree very well with the observations from the Cd isotopes, and support the suggested transitional region for the onset of low-energy enhancement with decreasing mass number. The neutron number dependency of the PDR strength is also evident.

nucl-ex