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Materials modification using ions with energies below 1 MeV/u (CROSBI ID 197780)

Prilog u časopisu | izvorni znanstveni rad | međunarodna recenzija

Karlušić, Marko ; Jakšić, Milko ; Buljan, Maja ; Sancho-Parramon, Jordi ; Bogdanović-Radović, Ivančica ; Radić, Nikola ; Bernstorff, Sigrid Materials modification using ions with energies below 1 MeV/u // Nuclear instruments & methods in physics research. Section B, Beam interactions with materials and atoms, 317 (2013), A; 143-148. doi: 10.1016/j.nimb.2013.02.053

Podaci o odgovornosti

Karlušić, Marko ; Jakšić, Milko ; Buljan, Maja ; Sancho-Parramon, Jordi ; Bogdanović-Radović, Ivančica ; Radić, Nikola ; Bernstorff, Sigrid

engleski

Materials modification using ions with energies below 1 MeV/u

Materials modifications using swift heavy ion beams provided by large scale accelerators have been used for many years in a wide variety of ways, e.g. to produce ion tracks or to modify the shape of nanoparticles. In all those applications the most relevant parameter for the materials modification is the electronic stopping power and not the ion kinetic energy. For many materials, ions with energies below 1 MeV/u delivered from medium and small size accelerators have already sufficiently high electronic stopping power to modify materials in different ways. Also, in this energy range the nuclear stopping power can be large enough to provide additional opportunities for materials modifications. In the present paper, we review recent experimental activities of the Zagreb group where ion beams with energies below 1 MeV/u, obtained from a 6 MV EN Tandem Van de Graaff accelerator have been used. Additionally, we present several novel examples of materials modifications and their analysis with such ion beams.

Ion track; SrTiO_3; Ge quantum dots; Nuclear microprobe

Rad je prezentiran na skupu The 19th International Workshop on Inelastic Ion-Surface Collisions (IISC-19), održanom od 16.-21.09.2012.g., Frauenchiemsee, Njemačka.

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Podaci o izdanju

317 (A)

2013.

143-148

objavljeno

0168-583X

10.1016/j.nimb.2013.02.053

Povezanost rada

Fizika

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