2018•Review of Scientific InstrumentsRequires access

Simultaneous visualization of wall motion, beam propagation, and implosion symmetry on the National Ignition Facility (invited)

N. Izumi, N. B. Meezan, Steve A. Johnson, Brandon N. Woodworth, D. T. Woods, Ogden S. Jones, Otto L. Landen, Jeremy J. Kroll, S. A. Vonhof, Abbas Nikroo, Javier Jaquez, K. Kangas, C. G. Bailey, M. Hardy, R. Ehrlich, J. E. Ralph, Richard P. J. Town, D. K. Bradley, Denise E. Hinkel, A. S. Moore, L. Divol, Christopher V. Young, J. D. Moody

Open publisher page 17 citations

Abstract

Achieving a symmetric implosion in National Ignition Facility indirect drive targets requires understanding and control of dynamic changes to the laser power transport in the hohlraum. We developed a new experimental platform to simultaneously visualize wall-plasma motion and dynamic laser power transport in the hohlraum and are using it to investigate correlations of these measurements with the imploded capsule symmetry. In a series of experiments where we made one single parameter variation, we show the value of this new platform in developing an understanding of laser transport and implosion symmetry. This platform also provides a new way to evaluate dynamic performance of advanced hohlraum designs.

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What this paper is about

Achieving a symmetric implosion in National Ignition Facility indirect drive targets requires understanding and control of dynamic changes to the laser power transport in the hohlraum. We developed a new experimental platform to simultaneously visualize wall-plasma motion and dynamic laser power transport in the hohlraum and are using it to investigate correlations of these measurements with the imploded capsule symmetry. In a series of experiments where we made one single parameter variation, we show the value of this new platform in developing an understanding of laser transport and implosion symmetry. This platform also provides a new way to evaluate dynamic performance of advanced hohlraum designs.

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Available abstract

Achieving a symmetric implosion in National Ignition Facility indirect drive targets requires understanding and control of dynamic changes to the laser power transport in the hohlraum. We developed a new experimental platform to simultaneously visualize wall-plasma motion and dynamic laser power transport in the hohlraum and are using it to investigate correlations of these measurements with the imploded capsule symmetry. In a series of experiments where we made one single parameter variation, we show the value of this new platform in developing an understanding of laser transport and implosion symmetry. This platform also provides a new way to evaluate dynamic performance of advanced hohlraum designs.

Key concepts: Hohlraum, Implosion, National Ignition Facility, Inertial confinement fusion, Ignition system, Physics, Laser, Symmetry (geometry)

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Simultaneous visualization of wall motion, beam propagation, and implosion symmetry on the National Ignition Facility (invited) — Research Paper | ScholarLens