The measured room-temperature absorption spectra of LiF crystals implanted with 1.5 MeV He+ ions at different ion doses are presented. The application of a theoretical model allowed us to give an estimation of the band intensities associated with various kinds of electronic defects and to study their dependence on the ion dose. The model also considers the contribution due to narrometric lithium colloids, whose formation starts in the dose range at which the production of colour centres saturates
We present results on simultaneous nanostructuring and optical activation of lithium fluoride crysta...
Proton beams of 3 MeV energy, produced by the injector of a linear accelerator for proton therapy, w...
Polished LiF crystals were irradiated by using 6MV X-rays produced by a clinical linear accelerator....
The measured room-temperature absorption spectra of LiF crystals implanted with 1.5 MeV He+ ions at ...
He+ ions with an energy of 1.5 -2 MeV and doses ranging from 6 ´ 1013 to 2.5 ´ 1016 ions/cm2 were us...
He+ ions with an energy of 1.5 -2 MeV and doses ranging from 6 ´ 1013 to 2.5 ´ 1016 ions/cm2 were us...
He+ ions with an energy of 1.5 -2 MeV and doses ranging from 6 ´ 1013 to 2.5 ´ 1016 ions/cm2 were us...
Various kinds of ionising radiation can be utilised to produce primary F centres (anion vacancies oc...
Single crystals of lithium fluoride were irradiated with various species of heavy ions in the energy...
Ion beam induced luminescence (IBIL) spectra of pure LiF under irradiation by a 2 MeV proton beam we...
Ion beam induced luminescence (IBIL) spectra of pure LiF under irradiation by a 2 MeV proton beam we...
Ion beam induced luminescence (IBIL) spectra of pure LiF under irradiation by a 2 MeV proton beam we...
Ion beam induced luminescence (IBIL) spectra of pure LiF under irradiation by a 2 MeV proton beam we...
In many materials electronic excitations created around the trajectories of swift ions result in def...
Eight nominally pure lithium fluoride crystals, obtained from a single LiF crystal containing less t...
We present results on simultaneous nanostructuring and optical activation of lithium fluoride crysta...
Proton beams of 3 MeV energy, produced by the injector of a linear accelerator for proton therapy, w...
Polished LiF crystals were irradiated by using 6MV X-rays produced by a clinical linear accelerator....
The measured room-temperature absorption spectra of LiF crystals implanted with 1.5 MeV He+ ions at ...
He+ ions with an energy of 1.5 -2 MeV and doses ranging from 6 ´ 1013 to 2.5 ´ 1016 ions/cm2 were us...
He+ ions with an energy of 1.5 -2 MeV and doses ranging from 6 ´ 1013 to 2.5 ´ 1016 ions/cm2 were us...
He+ ions with an energy of 1.5 -2 MeV and doses ranging from 6 ´ 1013 to 2.5 ´ 1016 ions/cm2 were us...
Various kinds of ionising radiation can be utilised to produce primary F centres (anion vacancies oc...
Single crystals of lithium fluoride were irradiated with various species of heavy ions in the energy...
Ion beam induced luminescence (IBIL) spectra of pure LiF under irradiation by a 2 MeV proton beam we...
Ion beam induced luminescence (IBIL) spectra of pure LiF under irradiation by a 2 MeV proton beam we...
Ion beam induced luminescence (IBIL) spectra of pure LiF under irradiation by a 2 MeV proton beam we...
Ion beam induced luminescence (IBIL) spectra of pure LiF under irradiation by a 2 MeV proton beam we...
In many materials electronic excitations created around the trajectories of swift ions result in def...
Eight nominally pure lithium fluoride crystals, obtained from a single LiF crystal containing less t...
We present results on simultaneous nanostructuring and optical activation of lithium fluoride crysta...
Proton beams of 3 MeV energy, produced by the injector of a linear accelerator for proton therapy, w...
Polished LiF crystals were irradiated by using 6MV X-rays produced by a clinical linear accelerator....