Cupak, C.
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1

On the question whether surface roughness can explain the a..:

Assink, L. ; Brötzner, J. ; Cupak, C....
Nuclear Instruments and Methods in Physics Research Section B: Beam Interactions with Materials and Atoms.  554 (2024)  - p. 165442 , 2024
 
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2

On the missing single collision peak in low energy heavy io..:

Wilhelm, R.A. ; Deuzeman, M.J. ; Rai, S....
Nuclear Instruments and Methods in Physics Research Section B: Beam Interactions with Materials and Atoms.  544 (2023)  - p. 165123 , 2023
 
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6

Retention of deuterium in beryllium: A combined investigati..:

Cupak, C. ; Pitthan, E. ; Moro, M.V....
Nuclear Materials and Energy.  33 (2022)  - p. 101249 , 2022
 
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7

Sputtering Behavior of Rough, Polycrystalline Mercury Analo..:

Biber, H. ; Brötzner, J. ; Jäggi, N....
The Planetary Science Journal.  3 (2022)  12 - p. 271 , 2022
 
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9

Analytical model for the sputtering of rough surfaces:

Szabo, P.S. ; Cupak, C. ; Biber, H....
Surfaces and Interfaces.  30 (2022)  - p. 101924 , 2022
 
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10

Graphical user interface for SDTrimSP to simulate sputterin..:

Szabo, P.S. ; Weichselbaum, D. ; Biber, H....
Nuclear Instruments and Methods in Physics Research Section B: Beam Interactions with Materials and Atoms.  522 (2022)  - p. 47-53 , 2022
 
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11

Sputter yields of rough surfaces: Importance of the mean su..:

Cupak, C. ; Szabo, P.S. ; Biber, H....
Applied Surface Science.  570 (2021)  - p. 151204 , 2021
 
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13

Sputtering of nanostructured tungsten and comparison to mod..:

Stadlmayr, R. ; Szabo, P.S. ; Mayer, D....
Journal of Nuclear Materials.  532 (2020)  - p. 152019 , 2020
 
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14

Fluence dependent changes of surface morphology and sputter..:

Stadlmayr, R. ; Szabo, P.S. ; Berger, B.M....
Nuclear Instruments and Methods in Physics Research Section B: Beam Interactions with Materials and Atoms.  430 (2018)  - p. 42-46 , 2018
 
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