Digital Holography for Plasma Facing Component (PFC) Erosion Measurement

POSTER

Abstract

One of the more serious engineering problems facing magnetic fusion energy reactors is the plasma/first-wall or plasma/divertor interface. Hot particles striking these PFC's could easily force replacement in less than a year. In-situ quantitative real-time erosion diagnostics to help understand the erosion process are not currently available. Single wavelength Digital Holography (DH) has been developed to a considerable level of sophistication and dual-wavelength (synthetic wavelength) DH has the potential to be a reliable vibration-resistant erosion diagnostic. Ambiguity free measurements at kHz rates of up to 1 cm of erosion with $\sim$ 1 micron resolution into the PFC and diffraction limited resolution transverse to the PFC are possible. Development of DH as an in-situ real-time PFC erosion diagnostic will be discussed and example data from single-wavelength DH will be presented.

*Partial Support from USDOE Contract DE-AC02-09CH11466 and USDOE Grant DE-FG02-07ER84724 is gratefully acknowledged.

Authors

  • C.E. (Tommy) Thomas Jr.

    • Third Dimension Technologies LLC
  • T.M. Biewer

    • Oak Ridge National Laboratory
    • ORNL
    • Oak Ridge National Laboratory, Oak Ridge, TN, USA
  • L.R. Baylor

    • ORNL
  • S.K. Combs

    • ORNL
  • S.J. Meitner

    • ORNL
    • Oak Ridge National Laboratory, Oak Ridge, TN, USA
  • D.L. Hillis

    • Oak Ridge National Laboratory
    • ORNL
    • Oak Ridge National Laboratory, Oak Ridge, TN, USA
  • E.M. Granstedt

    • Tri-Alpha Energy
  • R. Majeski

    • Princeton Plasma Physics Laboratory
    • PPPL
    • Princeton Plasma Physics Laboratory (PPPL)
    • Princeton Plasma Phys Lab
  • R. Kaita

    • Princeton Plasma Physics Laboratory
    • PPPL