Spatio-temporal focal spot characterization and modeling of the NIF ARC kilojoule picosecond laser

The advanced radiographic capability (ARC) laser system, part of the National Ignition Facility (NIF) at Lawrence Livermore National Laboratory, is a short-pulse laser capability integrated into the NIF. The ARC is designed to provide adjustable pulse lengths of ∼1-38 in four independent beamlets, e...

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Veröffentlicht in:Applied optics (2004) 2021-03, Vol.60 (8), p.2288-2303
Hauptverfasser: Williams, Wade H, Crane, John K, Alessi, David A, Boley, Charles D, Bowers, Mark W, Conder, Alan D, Di Nicola, Jean-Michel G, Di Nicola, Pascale, Haefner, Constantin, Halpin, John M, Hamamoto, Mathew Y, Heebner, John E, Hermann, Mark R, Herriot, Sandrine I, Homoelle, Doug C, Kalantar, Daniel H, Lanier, Thomas E, LaFortune, Kai N, Lawson, Janice K, Lowe-Webb, Roger R, Morrissey, Francis X, Nguyen, Hoang, Orth, Charles D, Pelz, Lawrence J, Prantil, Matthew A, Rushford, Michael C, Sacks, Richard A, Salmon, J Thaddeus, Seppala, Lynn G, Shaw, Michael J, Sigurdsson, Ronald J, Wegner, Paul J, Widmayer, C C, Yang, Steven T, Zobrist, Thomas L
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container_end_page 2303
container_issue 8
container_start_page 2288
container_title Applied optics (2004)
container_volume 60
creator Williams, Wade H
Crane, John K
Alessi, David A
Boley, Charles D
Bowers, Mark W
Conder, Alan D
Di Nicola, Jean-Michel G
Di Nicola, Pascale
Haefner, Constantin
Halpin, John M
Hamamoto, Mathew Y
Heebner, John E
Hermann, Mark R
Herriot, Sandrine I
Homoelle, Doug C
Kalantar, Daniel H
Lanier, Thomas E
LaFortune, Kai N
Lawson, Janice K
Lowe-Webb, Roger R
Morrissey, Francis X
Nguyen, Hoang
Orth, Charles D
Pelz, Lawrence J
Prantil, Matthew A
Rushford, Michael C
Sacks, Richard A
Salmon, J Thaddeus
Seppala, Lynn G
Shaw, Michael J
Sigurdsson, Ronald J
Wegner, Paul J
Widmayer, C C
Yang, Steven T
Zobrist, Thomas L
description The advanced radiographic capability (ARC) laser system, part of the National Ignition Facility (NIF) at Lawrence Livermore National Laboratory, is a short-pulse laser capability integrated into the NIF. The ARC is designed to provide adjustable pulse lengths of ∼1-38 in four independent beamlets, each with energies up to 1 kJ (depending on pulse duration). A detailed model of the ARC lasers has been developed that predicts the time- and space-resolved focal spots on target for each shot. Measurements made to characterize static and dynamic wavefront characteristics of the ARC are important inputs to the code. Modeling has been validated with measurements of the time-integrated focal spot at the target chamber center (TCC) at low power, and the space-integrated pulse duration at high power, using currently available diagnostics. These simulations indicate that each of the four ARC beamlets achieves a peak intensity on target of up to a few 10 / .
doi_str_mv 10.1364/AO.416846
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subjects Lasers
Modelling
Pulse duration
Short pulses
Wave fronts
title Spatio-temporal focal spot characterization and modeling of the NIF ARC kilojoule picosecond laser
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