Matches in SemOpenAlex for { <https://semopenalex.org/work/W2899469503> ?p ?o ?g. }
- W2899469503 endingPage "66" @default.
- W2899469503 startingPage "66" @default.
- W2899469503 abstract "The use of mixed-state ionic beams in collision dynamics investigations is examined. Using high resolution Auger projectile spectroscopy involving He-like ( 1 s 2 1 S , 1 s 2 s 3 , 1 S ) mixed-state beams, the spectrum contributions of the 1 s 2 s 3 S metastable beam component is effectively separated and clearly identified. This is performed with a technique that exploits two independent spectrum measurements under the same collision conditions, but with ions having quite different metastable fractions, judiciously selected by varying the ion beam charge-stripping conditions. Details of the technique are presented together with characteristic examples. In collisions of 4 MeV B 3 + with H 2 targets, the Auger electron spectrum of the separated 1 s 2 s 3 S boron beam component allows for a detailed analysis of the formation of the 1 s 2 s ( 3 S ) n l 2 L states by direct n l transfer. In addition, the production of hollow 2 s 2 p 1 , 3 P doubly- and 2 s 2 p 2 2 D triply-excited states, by direct excitation and transfer-excitation processes, respectively, can also be independently studied. In similar mixed-state beam collisions of 15 MeV C 4 + with H 2 , He, Ne and Ar targets, the contributions of the 1 s 2 , 1 s 2 s 3 , 1 S beam components to the formation of the 2 s 2 p 3 , 1 P states by double-excitation, 1 s → 2 p excitation and transfer-loss processes can be clearly identified, facilitating comparisons with theoretical calculations." @default.
- W2899469503 created "2018-11-09" @default.
- W2899469503 creator A5026481247 @default.
- W2899469503 creator A5045113306 @default.
- W2899469503 creator A5055874239 @default.
- W2899469503 creator A5057114421 @default.
- W2899469503 creator A5071498638 @default.
- W2899469503 date "2018-11-29" @default.
- W2899469503 modified "2023-10-03" @default.
- W2899469503 title "Mixed-State Ionic Beams: An Effective Tool for Collision Dynamics Investigations" @default.
- W2899469503 cites W1509718075 @default.
- W2899469503 cites W1586927272 @default.
- W2899469503 cites W1628584328 @default.
- W2899469503 cites W1634831054 @default.
- W2899469503 cites W1656325183 @default.
- W2899469503 cites W1965206191 @default.
- W2899469503 cites W1968850923 @default.
- W2899469503 cites W1973496189 @default.
- W2899469503 cites W1974629288 @default.
- W2899469503 cites W1974833566 @default.
- W2899469503 cites W1974866731 @default.
- W2899469503 cites W1977840764 @default.
- W2899469503 cites W1978420862 @default.
- W2899469503 cites W1979404510 @default.
- W2899469503 cites W1981990999 @default.
- W2899469503 cites W1983744358 @default.
- W2899469503 cites W1984254044 @default.
- W2899469503 cites W1984920692 @default.
- W2899469503 cites W1985345352 @default.
- W2899469503 cites W1985696556 @default.
- W2899469503 cites W1991334238 @default.
- W2899469503 cites W1997950113 @default.
- W2899469503 cites W2001442931 @default.
- W2899469503 cites W2005403697 @default.
- W2899469503 cites W2006431863 @default.
- W2899469503 cites W2006985149 @default.
- W2899469503 cites W2008238569 @default.
- W2899469503 cites W2009081531 @default.
- W2899469503 cites W2011096974 @default.
- W2899469503 cites W2014582222 @default.
- W2899469503 cites W2018454454 @default.
- W2899469503 cites W2021912300 @default.
- W2899469503 cites W2024354579 @default.
- W2899469503 cites W2026829460 @default.
- W2899469503 cites W2030286441 @default.
- W2899469503 cites W2034449077 @default.
- W2899469503 cites W2036425288 @default.
- W2899469503 cites W2036441881 @default.
- W2899469503 cites W2040547203 @default.
- W2899469503 cites W2042565995 @default.
- W2899469503 cites W2043690087 @default.
- W2899469503 cites W2044764675 @default.
- W2899469503 cites W2047786779 @default.
- W2899469503 cites W2049385286 @default.
- W2899469503 cites W2051387313 @default.
- W2899469503 cites W2051631727 @default.
- W2899469503 cites W2053634015 @default.
- W2899469503 cites W2054124841 @default.
- W2899469503 cites W2057330441 @default.
- W2899469503 cites W2059414775 @default.
- W2899469503 cites W2059528895 @default.
- W2899469503 cites W2062213591 @default.
- W2899469503 cites W2062281887 @default.
- W2899469503 cites W2063378893 @default.
- W2899469503 cites W2071286440 @default.
- W2899469503 cites W2072177518 @default.
- W2899469503 cites W2079817551 @default.
- W2899469503 cites W2081526508 @default.
- W2899469503 cites W2084312533 @default.
- W2899469503 cites W2088468939 @default.
- W2899469503 cites W2089373631 @default.
- W2899469503 cites W2093710165 @default.
- W2899469503 cites W2094249117 @default.
- W2899469503 cites W2126172596 @default.
- W2899469503 cites W2127632487 @default.
- W2899469503 cites W2141088977 @default.
- W2899469503 cites W2144966247 @default.
- W2899469503 cites W2165952745 @default.
- W2899469503 cites W2216204281 @default.
- W2899469503 cites W2314331231 @default.
- W2899469503 cites W2346879581 @default.
- W2899469503 cites W2550833508 @default.
- W2899469503 cites W2554041181 @default.
- W2899469503 cites W2761148624 @default.
- W2899469503 cites W2770907008 @default.
- W2899469503 cites W2783570753 @default.
- W2899469503 cites W2804598978 @default.
- W2899469503 cites W3023803360 @default.
- W2899469503 cites W3101800620 @default.
- W2899469503 cites W4244950949 @default.
- W2899469503 cites W916132813 @default.
- W2899469503 cites W2028753620 @default.
- W2899469503 doi "https://doi.org/10.3390/atoms6040066" @default.
- W2899469503 hasPublicationYear "2018" @default.
- W2899469503 type Work @default.
- W2899469503 sameAs 2899469503 @default.
- W2899469503 citedByCount "6" @default.
- W2899469503 countsByYear W28994695032020 @default.