Bulletin of the American Physical Society
63rd Annual Meeting of the APS Division of Plasma Physics
Volume 66, Number 13
Monday–Friday, November 8–12, 2021; Pittsburgh, PA
Session JP11: Poster Session IV:
Astrophysical Plasma Phenomena
Education and Outreach: Public Engagement, Workforce Development, DEI, High School Research, Undergraduate Research
MFE - Exhaust and PMI; Disruptions and Runaway Electrons; Energetic Particles
2:00 PM - 5:00 PM
Tuesday, November 9, 2021
Room: Hall A
Abstract: JP11.00037 : An in-situ and in-vivo characterization facility for Ion-Gas-Neutral Interactions with Surfaces (IGNIS-2) under fusion-relevant vacuum conditions
Presenter:
Ethan Kunz
(Pennsylvania State University)
Authors:
Ethan Kunz
(Pennsylvania State University)
Jean Paul Allain
(Pennsylvania State University)
Matthew Fredd
(Pennsylvania State University)
Camilo Jaramillo
(Pennsylvania State University)
Sara Kolecki
(Pennsylvania State University)
Camila López Pérez
(Pennsylvania State University)
Matthew S Parsons
(Pennsylvania State University)
Martin Nieto-Pérez
(Pennsylvania State University)
Hanna Schamis
(Pennsylvania State University)
Carli S Smith
(Pennsylvania State University)
The Ion-Gas-Neutral Interactions with Surfaces (IGNIS-2) facility at Penn State is the fourth generation of advanced surface science facilities developed by Allain et al. The facility will be capable of surface modification and ion beam irradiation with ion energies from 50 to 5000 eV and current densities up to 7 mA cm-2. IGNIS-2 will use in-situ characterization to study surface evolution under exposure to simulated fusion conditions. Techniques include high-pressure X-Ray Photoelectron Spectroscopy using a monochromated high-pressure X-Ray Source, Ion Scattering Spectroscopy (forward and backward scattering), UV-Vis-NIR reflectance spectroscopy, Multi-Beam Optical Stress Sensor , mass spectrometry, and in-situ erosion measurements.
IGNIS-2 will be composed of multiple interconnected vacuum stages and glovebox for in-vacuo preparation and transfer of samples for air sensitive processes. Additional stations will host thin film deposition and liquid metal application facilities.
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