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Showing 1 to 3 of 3 for “"X-ray Line Polarization"”.

  1. Theoretical and Experimental Studies of Radiation from High-Z Multiply Ionized L-shell Ions with Emphasis on X-ray Line Polarization

    … to generate atomic databases and calculate x-ray line polarization, as well as non-local thermodynamic equilibrium kinetic modeling, which is used to understand the radiative properties of HED plasmas. The Electron Beam Ion Trap (EBIT) and a few HED plasma facilities are utilized along with an …

    unr Repository record for Theoretical and Experimental Studies of Radiation from High-Z Multiply Ionized L-shell Ions with Emphasis on X-ray Line Polarization (opens in a new tab)

  2. Theoretical Studies of L-shell X-ray Line Polarization and M-shell X-ray Spectroscopic Emission from Highly Ionized Xenon Ions

    … the development of intense radiation sources. X-ray plasma spectroscopy and spectropolarimetry are integral to the study of HED plasmas. Comparison of x-ray line emission spectra to non-local thermodynamic equilibrium (non-LTE) modeling and inclusion of non-thermal effects provides insights to …

    unr Repository record for Theoretical Studies of L-shell X-ray Line Polarization and M-shell X-ray Spectroscopic Emission from Highly Ionized Xenon Ions (opens in a new tab)

  3. X-ray Radiative Signatures Influenced by Nonthermal Effects in High-Energy-Density Laboratory Plasmas of Mid-Atomic-Number Z-pinches

    … of the complex and intricate plasma system. X-ray radiation, for example, is a signature of ionization kinetics in mid-to-high-Z atoms. X-rays, moreover, are notably valuable for diagnosing HED plasmas, where thermal and nonthermal x-ray features describe, in general, "hot" and "cold" plasmas, …

    unr Repository record for X-ray Radiative Signatures Influenced by Nonthermal Effects in High-Energy-Density Laboratory Plasmas of Mid-Atomic-Number Z-pinches (opens in a new tab)