An investigation into the use of atomic datasets in simulations of the Ni-like gadolinium x-ray laser
Author:
Publisher
IOP Publishing
Subject
Condensed Matter Physics,Atomic and Molecular Physics, and Optics
Reference31 articles.
1. Significant improvement in the efficiency and brightness of the J = 0–1 196-nm line of the germanium laser by use of double-pulse pumping
2. First observation of lasing at 231 � in neon-like nickel using the prepulse technique
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4. A Saturated X-ray Laser Beam at 7 Nanometers
5. A computational investigation of the neon-like germanium collisionally-pumped laser considering the effect of prepulses
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1. Electron impact excitation rate coefficients for Ni-like gadolinium;The European Physical Journal D;2009-03-19
2. Fully relativistic distorted-wave calculations for electron impact excitation of highly chargednickel-like ions;Acta Physica Sinica;2008
3. Relativistic many-body calculations of electric-dipole lifetimes, rates and oscillator strengths of Δn= 0 transitions between 3l−14l′ states in Ni-like ions;Journal of Physics B: Atomic, Molecular and Optical Physics;2007-02-19
4. Optimizing the performance of nickel-like collisionally pumped x-ray lasers. II. Lasers for the wavelength range50–100Å;Physical Review A;2007-02-07
5. Multipole (E1, M1, E2, M2, E3, M3) transition wavelengths and rates between 3l−15l′ excited and ground states in nickel-like ions;Journal of Physics B: Atomic, Molecular and Optical Physics;2006-10-20
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