Analysis of K- and L-shell spectra from indirectly driven implosions
暂无分享,去创建一个
L. Suter | R. Lee | D. Kania | C. Keane | R. Mancini | B. Hammel | A. Osterheld | C. Hooper | N. Delamater
[1] R. Mancini,et al. Calculational aspects of the Stark line broadening of multielectron ions in plasmas , 1991 .
[2] L. Suter,et al. Line broadening of Ne-like xenon as a diagnostic for high-density implosion experiments , 1990 .
[3] J. Kilkenny,et al. The X-ray spectroscopic diagnosis of laser-produced plasmas, with emphasis on line broadening , 1980 .
[4] Young,et al. Time-resolved measurement of coronal temperature and line-intensity profiles in laser-produced plasmas. , 1988, Physical review letters.
[5] C. Keane,et al. DSP: A detailed spectroscopy postprocessor for H-, He-, and Li-like ions , 1991 .
[6] Roberto Mancini,et al. Density and temperature diagnostic based on the Ar He β line and associated Li‐like satellites , 1992 .
[7] Chen,et al. Independent determinations of temperature and ionization balance in a laser-produced plasma by use of L-shell x-ray spectra. , 1987, Physical review letters.
[8] Epstein,et al. Absorption-spectroscopy diagnosis of pusher conditions in laser-driven implosions. , 1986, Physical review. A, General physics.
[9] R. Lee. Fits for hydrogenic Stark‐broadened line profiles for the elements carbon to argon , 1985 .
[10] P. Bell,et al. High Z x-ray spectroscopy of laser-imploded capsules , 1990 .
[11] J. Apruzese,et al. Influence of broadband photocoupling on K-shell excitation in aluminum , 1980 .
[12] Griem,et al. Stark-profile calculations for resonance lines of heliumlike argon in dense plasmas. , 1990, Physical review. A, Atomic, molecular, and optical physics.
[13] A. Hauer,et al. Spectroscopic measurement of high-density CO/sub 2/-laser-driven implosion , 1980 .
[14] Bradley,et al. Time-resolved spectroscopic measurements of high density in Ar-filled microballoon implosions. , 1989, Physical review letters.
[15] Keane,et al. X-ray spectroscopic measurements of high densities and temperatures from indirectly driven inertial confinement fusion capsules. , 1993, Physical review letters.
[16] Hooper,et al. Calculation of spectral line profiles of multielectron emitters in plasmas. , 1988, Physical review. A, General physics.
[17] R. London,et al. Atomic physics modeling of x-ray laser plasmas , 1992 .
[18] J. Apruzese,et al. Collisional-radiative-equilibrium spectroscopic diagnosis of a compressed, optically thick neon plasma , 1981 .
[19] M. Rosen,et al. Theory and design of soft x-ray laser experiments at the Lawrence Livermore National Laboratory , 1989 .
[20] Talin,et al. Model for the line shapes of complex ions in hot and dense plasmas. , 1990, Physical review. A, Atomic, molecular, and optical physics.
[21] Iglesias,et al. Ion-dynamic effects on the line shapes of hydrogenic emitters in plasmas. , 1986, Physical review. A, General physics.
[22] Dennis L. Matthews,et al. No pain—no gain: The complex art of soft x‐ray laser target design and analysis , 1988 .