Abstract
Fundamental studies were performed to assess the role of limiting orifice (anode) diameter on the charged particle characteristics of a radiofrequency glow discharge (rf-GD) atomic emission source. Measurements of the electron and ion number densities, electron temperature, average electron energy and electron energy distribution function were made by using an impedance-tuned Langmuir probe. The electrical features of the rf-GD were studied by the simultaneous use of voltage and current probes. Studies were focused on the effects of the limiting orifice geometry on the rf-GD operation under various conditions of operating pressure and probe sampling position. The results show that limiting orifice diameters and discharge pressures have an important role in the excitation conditions of rf-GD sources. In addition, rf-power generator systems can greatly affect electron and ion densities, and to a lesser extent the electron temperature, average electron energy and electron energy distribution functions. Some phenomena previously reported, including conditions that produce self-absorption in atomic emission applications and the high degree of spatial specificity in MS applications, are reasonably explained.
Talk to us
Join us for a 30 min session where you can share your feedback and ask us any queries you have
Disclaimer: All third-party content on this website/platform is and will remain the property of their respective owners and is provided on "as is" basis without any warranties, express or implied. Use of third-party content does not indicate any affiliation, sponsorship with or endorsement by them. Any references to third-party content is to identify the corresponding services and shall be considered fair use under The CopyrightLaw.