Journal of Synchrotron Radiation · 2014 · 32 citations · 14 references
Materials ScienceChemical EngineeringEngineeringGraphitic Carbon ContaminationSurface Physics AspectsContamination ProcessSurface ScienceApplied PhysicsNonthermal PlasmaPlasma PhysicsPlasma ConfinementGas Discharge PlasmaSynchrotron RadiationPlasma ApplicationPlasma ProcessingSynchrotron Beamline Optics
Although the graphitic carbon contamination of synchrotron beamline optics has been an obvious problem for several decades, the basic mechanisms underlying the contamination process as well as the cleaning/remediation strategies are not understood and the corresponding cleaning procedures are still under development. In this study an analysis of remediation strategies all based on in situ low-pressure RF plasma cleaning approaches is reported, including a quantitative determination of the optimum process parameters and their influence on the chemistry as well as the morphology of optical test surfaces. It appears that optimum results are obtained for a specific pressure range as well as for specific combinations of the plasma feedstock gases, the latter depending on the chemical aspects of the optical surfaces to be cleaned.
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NIST Atomic Spectra Database (version 2.0)
Yuri Ralchenko, Fan-Di Jou, D. E. Kelleher et al. · 1999 · 1.3K citations
Rhodium and Rhodium Oxide Thin Films Characterized by XPS
Yoshio Abe, Kiyohiko Kato, Midori Kawamura et al. · Surface Science Spectra · 2001 · 87 citations