Desorption of gold nanoclusters (2–30nm) under low excitation of their electronic subsystem by Ar ions (14keV/nm)
Author:
Publisher
Elsevier BV
Subject
Instrumentation,Nuclear and High Energy Physics
Reference23 articles.
1. Measurement of cluster masses up to 107 amu arising as a result of inelastic sputtering of thin layers by ions
2. Detection of Large Cluster Ions by Ion-to-ion Conversion
3. Macrocluster effect caused by single multiply charged ions: masses of gold nanoclusters (3–30 nm) arising as a result of electronic processes induced by fission fragment bombardment in ultradispersed targets of gold
4. Absolute yields and angular distributions of gold nanoclusters (2–22 nm) desorbed due to electronic processes by fast heavy ions from nanodispersed gold targets
5. Macrocluster desorption effect caused by single MCI: charges of gold clusters (2–20 nm) desorbed due to electronic processes induced by fission fragment bombardment in nanodispersed gold targets
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1. Large electronic sputtering yield of nanodimensional Au thin films: Dominant role of thermal conductivity and electron phonon coupling factor;Journal of Applied Physics;2017-03-07
2. Temperature of thermal spikes in amorphous silicon nitride films produced by 1.11MeV C603+ impacts;Nuclear Instruments and Methods in Physics Research Section B: Beam Interactions with Materials and Atoms;2015-07
3. Interaction of low-energy Cu2 dimers with copper clusters on the graphite surface;Physics of the Solid State;2010-10
4. Ejection of Nanoclusters from Gold Nanoislet Layers by 38 keV Au Ions in the Elastic Stopping Mode;Journal of Nanoscience and Nanotechnology;2009-07-01
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