Characterization of plasma emission in the 1-6 nm band from laser-irradiated cryogenic xenon targets.

Autor: Bott-Suzuki, S. C., Bykanov, A., Khodykin, O., Tillack, M., Cordaro, S., McGuffey, C.
Předmět:
Zdroj: Journal of Applied Physics; 9/21/2019, Vol. 126 Issue 11, pN.PAG-N.PAG, 8p, 1 Diagram, 6 Graphs
Abstrakt: We present measurements from laser-produced plasmas generated using cryogenic Xe targets and quantify the emission characteristics in the soft x-ray region (1 to 6 nm). The system is based on a LN2-cooled rotating drum, which allows for a high repetition rate, and Nd:YAG laser systems with energies up to 325 mJ on-target with pulse lengths of 130 ps, 600 ps, or 6.5 ns. High resolution spectra are measured using a grazing incidence spectrometer, and we present the first quantitative conversion efficiency (CE) measurements for Xe in this range. Data show CE values up to ∼1% at 6 nm and ∼0.08% at 1.5 nm (for 2% bandwidth and 2π solid angle), and there are lower limits on the required laser intensities and energies on target to achieve these efficiencies. In addition, the emission spot size is directly measured at 2 nm (620 eV) using a point-projection slit imaging method, with optimized emission spot sizes of ∼20 μm. [ABSTRACT FROM AUTHOR]
Databáze: Complementary Index