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Evolution of morphology in nanocrystalline thin films during ion irradiation
G. Mayr,
S. Averback
Materials Research Lab
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peer-review
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Dive into the research topics of 'Evolution of morphology in nanocrystalline thin films during ion irradiation'. Together they form a unique fingerprint.
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Engineering & Materials Science
Ion bombardment
100%
Grain growth
77%
Thin films
59%
Ion beams
44%
Surface topography
37%
Stress relaxation
37%
Viscous flow
36%
Surface morphology
35%
Nanoparticles
30%
Hot Temperature
30%
Relaxation
29%
Computer simulation
17%
Experiments
11%
Physics & Astronomy
ion irradiation
65%
spikes
41%
thin films
32%
grain size
31%
liquid phase sintering
26%
data simulation
23%
viscous flow
23%
stress relaxation
22%
retraining
20%
bombardment
19%
topography
19%
computerized simulation
16%
ion beams
16%
molecular dynamics
15%
nanoparticles
14%
Chemical Compounds
Grain Growth
76%
Grain Size
58%
Stress Relaxation
41%
Simulation
39%
Liquid Film
30%
Sintering
25%
Ion
24%
Dimension
23%
Molecular Dynamics
23%
Surface
19%
Reduction
14%