2015
DOI: 10.1088/0953-4075/48/14/144016
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High-resolution x-ray spectroscopy to probe quantum dynamics in collisions of Ar17+,18+ions with atoms and solids, towards clusters

Abstract: We report on studies of projectile excited states produced by electron capture in both low and high velocity regimes, and when highly charged ions (HCIs) collide either with dilute or dense matter. Quantum effects in the interaction dynamics are probed via high-resolution x-ray spectroscopy for Ar17+ at 7 keV u−1 and for Ar18+ at 13.6 MeV u−1 on Ar, N2 or CH4 gas targets and on carbon solid foils. Relevant comparison between those two collision velocity regimes, and between gaseous and solid targets reveal spe… Show more

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“…Over the past decades, the charge exchange process has mainly been studied in low-energy region [5][6][7], while similar investigation in the high-energy regime with H-like and bare high-Z ions is still scarce. Nowadays, heavy-ion storage rings, such as the Heavy Ion Research Facility at Lanzhou-Cooling Storage Ring (HIRFL-CSR) [8,9], equipped with internal gas targets [10], can provide H-like and bare heavy-ion beams with projectile energies of tens to hundreds of MeV u −1 , and which opens the possibility for exploring experimentally the NRC of higher-Z ions with heavy atoms under the single-collision condition.…”
Section: Introductionmentioning
confidence: 99%
“…Over the past decades, the charge exchange process has mainly been studied in low-energy region [5][6][7], while similar investigation in the high-energy regime with H-like and bare high-Z ions is still scarce. Nowadays, heavy-ion storage rings, such as the Heavy Ion Research Facility at Lanzhou-Cooling Storage Ring (HIRFL-CSR) [8,9], equipped with internal gas targets [10], can provide H-like and bare heavy-ion beams with projectile energies of tens to hundreds of MeV u −1 , and which opens the possibility for exploring experimentally the NRC of higher-Z ions with heavy atoms under the single-collision condition.…”
Section: Introductionmentioning
confidence: 99%