The atomic xenon (5d¿6p) infrared laser has been experimentally and theoretically investigated using a short-pulse (30-ns), high-power (1-10-MW/cm3) coaxial electron beam excitation source. In most cases, laser oscillation is not observed during the e-beam current pulse. Laser pulses of hundreds of nanoseconds duration are subsequently obtained, however, with oscillation beginning 60-800 ns after the current pulse terminates. Results from a computer model for the xenon laser reproduce the experimental values and show that oscillation begins when the fractional electron density decays below a critical value of ≈0.2-0.8×10 6. These results lend credence to the proposal that electron collision mixing of the laser levels limits the maximum v...
The study of the interaction between the electron gas and the atoms in excited states has been unde...
The discharge conditions of the multi-atmospheric e-beam sustained Ar-Xe laser are investigated. It ...
The high pressure atomic xenon laser is becoming the most promising light source in the wavelength r...
Abstract-The atomic xenon (5d + 6 p) infrared laser has been ex-perimentally and theoretically inve...
Abstract. In order to study the kinetic mechanism of the e-beam pumped Ar/Xe laser, the temporal pro...
In order to study the kinetic mechanism of the e-beam pumped Ar/Xe laser, the temporal profiles of i...
Experiments carried out with an electron-beam apparatus that produced pump pulses with an intermedia...
A computer model has been developed to investigate the excitation and deexcitation mechanisms and to...
A computer model has been developed to investigate the excitation and deexcitation mechanisms and to...
The time dependence of the vacuum ultraviolet emissions from mixtures of xenon and argon gases is me...
The goal of this work was to determine the kinetic processes involved in the formation and removal o...
We study the effect of the pulse duration for an ultra-fast and intense laser on the fundamental pro...
We report a theoretical analysis of the measurements that carried out to study the breakdo...
The present study contributes to a better understanding of the atomic Xe laser as a powerful IR sour...
The study of the interaction between the electron gas and the atoms in excited states has been unde...
The study of the interaction between the electron gas and the atoms in excited states has been unde...
The discharge conditions of the multi-atmospheric e-beam sustained Ar-Xe laser are investigated. It ...
The high pressure atomic xenon laser is becoming the most promising light source in the wavelength r...
Abstract-The atomic xenon (5d + 6 p) infrared laser has been ex-perimentally and theoretically inve...
Abstract. In order to study the kinetic mechanism of the e-beam pumped Ar/Xe laser, the temporal pro...
In order to study the kinetic mechanism of the e-beam pumped Ar/Xe laser, the temporal profiles of i...
Experiments carried out with an electron-beam apparatus that produced pump pulses with an intermedia...
A computer model has been developed to investigate the excitation and deexcitation mechanisms and to...
A computer model has been developed to investigate the excitation and deexcitation mechanisms and to...
The time dependence of the vacuum ultraviolet emissions from mixtures of xenon and argon gases is me...
The goal of this work was to determine the kinetic processes involved in the formation and removal o...
We study the effect of the pulse duration for an ultra-fast and intense laser on the fundamental pro...
We report a theoretical analysis of the measurements that carried out to study the breakdo...
The present study contributes to a better understanding of the atomic Xe laser as a powerful IR sour...
The study of the interaction between the electron gas and the atoms in excited states has been unde...
The study of the interaction between the electron gas and the atoms in excited states has been unde...
The discharge conditions of the multi-atmospheric e-beam sustained Ar-Xe laser are investigated. It ...
The high pressure atomic xenon laser is becoming the most promising light source in the wavelength r...