Title :
High repetition rate collisional soft X-ray lasers based on grazing incidence pumping
Author :
Luther, Bradley M. ; Wang, Yong ; Larotonda, Miguel A. ; Alessi, David ; Berrill, Mark ; Rocca, Jorge J. ; Dunn, James ; Keenan, R. ; Shlyaptsev, Vyacheslav N.
Author_Institution :
Nat. Sci. Found. ERC for Extreme Ultraviolet Sci. & Technol., Colorado State Univ., Fort Collins, CO, USA
Abstract :
We discuss the demonstration of gain-saturated high repetition rate table-top soft X-ray lasers producing microwatt average powers at wavelengths ranging from 13.9 to 33 nm. The results were obtained heating a precreated plasma with a picosecond optical laser pulse impinging at grazing incidence onto a precreated plasma. This pumping geometry increases the energy deposition efficiency of the pump beam into the gain region, making it possible to saturate soft X-ray lasers in this wavelength range with a short pulse pump energy of only 1 J at 800-nm wavelength. Results corresponding to 5-Hz repetition rate operation of gain-saturated 14.7-nm Ni-like Pd and 32.6-nm line Ne-like Ti lasers pumped by a table-top Ti:sapphire laser are reported. We also discuss results obtained using a 1 ω1054-nm prepulse and 2 ω527-nm short pulse from a Nd:glass pump laser. This work demonstrates the feasibility of producing compact high average power soft X-ray lasers for applications.
Keywords :
X-ray lasers; X-ray optics; optical pulse generation; optical pumping; optical saturation; palladium; plasma heating by laser; titanium; 1 J; 13.9 to 33 nm; 14.7 nm; 32.6 nm; 5 Hz; 800 nm; Al2O3:Ti; Nd:glass pump laser; Ne-like Ti lasers; Ni-like Pd lasers; Pd; SiO2:Nd; Ti; Ti:sapphire laser pump; collisional X-ray lasers; energy deposition efficiency; gain-saturated lasers; grazing incidence pumping; high repetition rate lasers; picosecond optical laser pulse; precreated plasma heating; pump beam; pumping geometry; soft X-ray lasers; table-top lasers; Heating; Laser excitation; Optical pulses; Optical pumping; Plasma waves; Plasma x-ray sources; Power lasers; Pulsed laser deposition; Pump lasers; X-ray lasers; Grazing incidence pumping; neon-like ions; nickel-like ions; soft X-ray laser;
Journal_Title :
Quantum Electronics, IEEE Journal of
DOI :
10.1109/JQE.2005.860123