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Hydrogen in and on natural and synthetic diamond
J. P.F. Sellschop
,
S. H. Connell
, C. C.P. Madiba
, E. Sideras-Haddad
, M. C. Stemmet
, K. Bharuth-Ram
, H. Appel
, W. Kundig
, B. Patterson
, E. Holzschuh
University of the Witwatersrand
University of KwaZulu-Natal
Karlsruhe Institute of Technology
University of Zurich
Research output
:
Contribution to journal
›
Article
›
peer-review
14
Citations (Scopus)
Overview
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Engineering
Diamond
100%
Synthetic Diamond
100%
Natural Diamond
100%
Nuclear Reaction Analysis
28%
Analytical Approach
14%
Past Decade
14%
Growth Process
14%
Light Isotope
14%
Molecular Hydrogen
14%
Radiation Effect
14%
Chemical Vapor Deposition
14%
High Resolution
14%
Angular Distribution
14%
Physics
Nuclear Reaction
100%
Muonium
100%
Radiation Effect
50%
Muon
50%
High Resolution
50%
Angular Distribution
50%
Vertical Distribution
50%
Material Science
Diamond
100%
Synthetic Diamond
100%
Natural Diamond
100%
Physical Property
14%
Chemical Vapor Deposition
14%
Radiation Damage
14%
Chemistry
Hydrogen
100%
Nuclear Reaction
25%
Chemical Vapor Deposition
12%
Hydrogen Muonium
12%
Muon
12%
Muonium
12%
Keyphrases
Disport
16%
Damage-free
16%
Stable Growth
16%