Diriken J, Patronis N, Andreyev A, Antalic S, Bildstein V, Blazhev A, Darby IG, De Witte H, Eberth J, Elseviers J, et al. Experimental study of the $^{66}\mathrm{Ni}(d,\phantomůle{0.16em}{0ex}}p) ^{67}\mathrm{Ni}$ one-neutron transfer reaction. Phys. Rev. C [Internet]. 2015;91:054321.
Website Zouros TJM, Kanellakopoulos A, Madesis I, Dimitriou A, Fernández-Martín M, Martinez G, Mertzimekis TJ.
The Optimization of a 4-Element Input Lens on a Hemispherical Deflector Analyzer Using SIMION. Microscopy and Microanalysis. 2015;21:148-153.
Madesis I, Dimitriou A, Laoutaris A, Lagoyannis A, Axiotis M, Mertzimekis T, Andrianis M, Harissopulos S, Benis EP, Sulik B, et al. Atomic Physics with Accelerators: Projectile Electron Spectroscopy (APAPES). Journal of Physics: Conference Series [Internet]. 2015;583:012014.
WebsiteAbstractThe new research initiative APAPES (http://apapes.physics.uoc.gr/) has already established a new experimental station with a beam line dedicated for atomic collisions physics research, at the 5 MV TANDEM accelerator of the National Research Centre "Demokritos" in Athens, Greece. A complete zero-degree Auger projectile spectroscopy (ZAPS) apparatus has been put together to perform high resolution studies of electrons emitted in ion-atom collisions. A single stage hemispherical spectrometer with a 2-dimensional Position Sensitive Detector (PSD) combined with a doubly-differentially pumped gas target will be used to perform a systematic isoelectronic investigation of K-Auger spectra emitted from collisions of preexcited and ground state He-like ions with gas targets using novel techniques. Our intention is to provide a more thorough understanding of cascade feeding of the 1s2s2p 4 P metastable states produced by electron capture in collisions of He-like ions with gas targets and further elucidate their role in the non-statistical production of excited three-electron 1s2s2p states by electron capture, recently a field of conflicting interpretations awaiting further resolution. At the moment, the apparatus is being completed and the spectrometer will soon be fully operational. Here we present the project progress and the recent high resolution spectrum obtained in collisions of 12 MeV C 4+ on a Neon gas target.
Papageorgiou F, Godelitsas A, Xanthos S, Voulgaris N, Nastos P, Mertzimekis TJ, Argyraki A, Katsantonis G.
Characterization of phosphogypsum deposited in Schistos remediated waste site (Piraeus, Greece). In:
Merkel BJ, Arab A Uranium - Past and Future Challenges. Springer International Publishing; 2015. pp. 271-280.
Website Botsou F, Godelitsas A, Kaberi H, Mertzimekis TJ, Goettlicher J, Steininger R, Scoullos M.
Distribution and partitioning of major and trace elements in pyrite-bearing sediments of a Mediterranean coastal lagoon. Chemie der Erde - Geochemistry [Internet]. 2015;75:219 - 236.
WebsiteAbstractAbstract The formation of iron sulphide minerals exerts significant control on the behaviour of trace elements in sediments. In this study, three short sediment cores, retrieved from the remote Antinioti lagoon (N. Kerkyra Island, \{NW\} Greece), are investigated concerning the solid phase composition, distribution, and partitioning of major (Al, Fe) and trace elements (Cd, Cu, Mn, Pb, and Zn). According to 210Pb, the sediments sampled correspond to depositions of the last 120 years. The high amounts of organic carbon (4.1–27.5%) result in the formation of Fe sulphides, predominantly pyrite, already at the surface sediment layers. Pyrite morphologies include monocrystals, polyframboids, and complex FeS–FeS2 aggregates. According to synchrotron-generated micro X-ray fluorescence and X-ray absorption near-edge structure spectra, authigenically formed, Mn-containing, Fe(III) oxyhydroxides (goethite type) co-exist with pyrite in the sediments studied. Microscopic techniques evidence the formation of galena, sphalerite and CuS, whereas sequential extractions show that carbonates are important hosts for Mn, Cd, and Zn. However, significant percentages of non-lattice held elements are bound to Fe/Mn oxyhydroxides that resist reductive dissolution (on average 60% of Pb, 46% of Cd, 43% of Zn and 9% of Cu). The partitioning pattern changes drastically in the deeper part of the core that is influenced by freshwater inputs. In these sediments, the post-depositional pyritization mechanism, illustrated by overgrowths of Fe monosulphides on pre-existing pyrite grains, results in relatively high degree of pyritization that reaches 49% for Cd, 66% for Cu, 32% for Zn and 7% for Pb.
Diriken J, Patronis N, Andreyev AN, Antalic S, Bildstein V, Blazhev A, Darby IG, De Witte H, Eberth J, Elseviers J, et al. Erratum to {"}Study of the deformation-driving ?d5/2 orbital in 6728Ni39 using one-neutron transfer reactions{"} [Phys. Lett. B 736 (2014) 533-538]. Physics Letters, Section B: Nuclear, Elementary Particle and High-Energy Physics. 2015;743:543.