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Featured researches published by Laurent Masse.
Applied Optics | 2013
J. A. Koch; O. L. Landen; L. J. Suter; Laurent Masse; Daniel Clark; J. S. Ross; Andrew J. Mackinnon; N. B. Meezan; C. A. Thomas; Yuan Ping
X-ray backlit radiographs of dense plasma shells can be significantly altered by refraction of x rays that would otherwise travel straight-ray paths, and this effect can be a powerful tool for diagnosing the spatial structure of the plasma being radiographed. We explore the conditions under which refraction effects may be observed, and we use analytical and numerical approaches to quantify these effects for one-dimensional radial opacity and density profiles characteristic of inertial-confinement fusion (ICF) implosions. We also show how analytical and numerical approaches allow approximate radial plasma opacity and density profiles to be inferred from point-projection refraction-enhanced radiography data. This imaging technique can provide unique data on electron density profiles in ICF plasmas that cannot be obtained using other techniques, and the uniform illumination provided by point-like x-ray backlighters eliminates a significant source of uncertainty in inferences of plasma opacity profiles from area-backlit pinhole imaging data when the backlight spatial profile cannot be independently characterized. The technique is particularly suited to in-flight radiography of imploding low-opacity shells surrounding hydrogen ice, because refraction is sensitive to the electron density of the hydrogen plasma even when it is invisible to absorption radiography. It may also provide an alternative approach to timing shockwaves created by the implosion drive, that are currently invisible to absorption radiography.
Physics of Plasmas | 2016
Stephane Laffite; J. L. Bourgade; Tony Caillaud; J. A. Delettrez; J. A. Frenje; F. Girard; V. Yu. Glebov; Tirtha Joshi; O. Landoas; Guillaume Legay; S. Lemaire; R. C. Mancini; F. J. Marshall; Laurent Masse; Paul-Edouard Masson-Laborde; D.T. Michel; F. Philippe; Charles Reverdin; W. Seka; Veronique Tassin
We present in this article direct-drive experiments that were carried out on the Omega facility [T. R. Boehly et al., Opt. Commun. 133, 495 (1997)]. Two different pulse shapes were tested in order to vary the implosion stability of the same target whose parameters, dimensions and composition, remained the same. The direct-drive configuration on the Omega facility allows the accurate time-resolved measurement of the scattered light. We show that, provided the laser coupling is well controlled, the implosion time history, assessed by the “bang-time” and the shell trajectory measurements, can be predicted. This conclusion is independent on the pulse shape. In contrast, we show that the pulse shape affects the implosion stability, assessed by comparing the target performances between prediction and measurement. For the 1-ns square pulse, the measured neutron number is about 80% of the prediction. For the 2-step 2-ns pulse, we test here that this ratio falls to about 20%.
Bulletin of the American Physical Society | 2017
S. A. Yi; A. Zylstra; J. L. Kline; E. N. Loomis; G. A. Kyrala; R. C. Shah; T.S. Perry; R.J. Kanzleiter; S. H. Batha; Steve MacLaren; J. E. Ralph; Laurent Masse; J. D. Salmonson; Robert Tipton; D. A. Callahan; O. A. Hurricane
Bulletin of the American Physical Society | 2017
Alex Zylstra; Austin Yi; John L. Kline; George A. Kyrala; Eric Loomis; T.S. Perry; Rahul Shah; Steve Batha; Steve MacLaren; Joe Ralph; J. D. Salmonson; Laurent Masse; A. Nikroo; Michael Stadermann; Debbie Callahan; Omar Hurricane; N. Rice; H. Huang; C. Kong
Bulletin of the American Physical Society | 2017
Steve MacLaren; Alex Zylstra; Austin Yi; John L. Kline; George A. Kyrala; L.B. Kot; Eric Loomis; T.S. Perry; Rahul Shah; Laurent Masse; J. E. Ralph; S.F. Khan
Bulletin of the American Physical Society | 2016
Laurent Masse; T. Dittrich; S. Khan; George A. Kyrala; T. Ma; Steve MacLaren; Joe Ralph; J. D. Salmonson; R. Tipton
Bulletin of the American Physical Society | 2016
Laurent Masse; Omar Hurricane; P. Michel; R. Nora; M. Tabak
Bulletin of the American Physical Society | 2016
Stephane Laffite; C. Blancard; Jean-Luc Bourgade; Tony Caillaud; P. Cosse; G. Faussurier; F. Girard; O. Landoas; S. Lemaire; Paul-Edouard Masson-Laborde; F. Philippe; Charles Reverdin; Veronique Tassin; Guillaume Legay; Laurent Masse; J. A. Delettrez; Vladimir Yu. Glebov; Frederic J. Marshall; T. Michel; W. Seka; Johan A. Frenje; R. C. Mancini; T. Josgi
Bulletin of the American Physical Society | 2016
Marion Lafon; Pascal Gauthier; Laurent Masse
Bulletin of the American Physical Society | 2015
Stephane Laffite; Jean-Luc Bourgade; Tony Caillaud; F. Girard; O. Landoas; Sebastien Lemaire; Laurent Masse; Paul-Edouard Masson-Laborde; F. Philippe; Charles Reverdin; Veronique Tassin; Guillaume Legay; J. A. Delettrez; Vladimir Yu. Glebov; Frederic J. Marshall; T. Michel; W. Seka; Tirtha Joshi; R. C. Mancini; Johan A. Frenje