The Paul Trap Simulator Experiment (PTSX) is a cylindrical Paul trap whose purpose is to simulate the nonlinear dynamics of intense charged particle beam propagation in alternating-gradient magnetic transport systems. To investigate the ion plasma microstate in PTSX, including the ion density profile and the ion velocity distribution function, a laser-induced fluorescence diagnostic system is being developed as a nondestructive diagnostic. Instead of cesium, which has been used in the initial phase of the PTSX experiment, barium has been selected as the preferred ion for the laser-induced fluorescence diagnostic. A feasibility study of the laser-induced fluorescence diagnostic using barium ions is presented with the characterization of a tu...
AbstractLaser-induced ion fluorescence of laser-desorbed Ba+ ions provides a measure of the relative...
Author Institution:We have developed a technique which allows us to isolate gas phase molecular ions...
Author Institution:We have developed a technique which allows us to isolate gas phase molecular ions...
The Paul Trap Simulator Experiment (PTSX) simulates the propagation of intense charged particle beam...
Abstract. The Paul Trap Simulator Experiment (PTSX) is a compact laboratory facility whose purpose i...
The Paul trap simulator experiment (PTSX) is a compact laboratory linear Paul trap that simulates th...
A technique for measuring ion transport using laser-induced fluorescence has been developed and test...
The Paul Trap Simulator Experiment (PTSX) is a compact laboratory linear Paul trap that simulates th...
The charge particle emission form laser-generated plasma was studied experimentally and theoreticall...
The charge particle emission form laser-generated plasma was studied experimentally and theoreticall...
The charge particle emission form laser-generated plasma was studied experimentally and theoreticall...
The results presented here demonstrate that the Paul Trap Simulator Experiment (PTSX) simulates the ...
Sensitive methods have been developed to measure laser-induced fluorescence from trapped ions by red...
Abstract. The Paul Trap Simulator Experiment (PTSX) is under construction at the Princeton Plasma Ph...
AbstractSensitive methods have been developed to measure laser-induced fluorescence from trapped ion...
AbstractLaser-induced ion fluorescence of laser-desorbed Ba+ ions provides a measure of the relative...
Author Institution:We have developed a technique which allows us to isolate gas phase molecular ions...
Author Institution:We have developed a technique which allows us to isolate gas phase molecular ions...
The Paul Trap Simulator Experiment (PTSX) simulates the propagation of intense charged particle beam...
Abstract. The Paul Trap Simulator Experiment (PTSX) is a compact laboratory facility whose purpose i...
The Paul trap simulator experiment (PTSX) is a compact laboratory linear Paul trap that simulates th...
A technique for measuring ion transport using laser-induced fluorescence has been developed and test...
The Paul Trap Simulator Experiment (PTSX) is a compact laboratory linear Paul trap that simulates th...
The charge particle emission form laser-generated plasma was studied experimentally and theoreticall...
The charge particle emission form laser-generated plasma was studied experimentally and theoreticall...
The charge particle emission form laser-generated plasma was studied experimentally and theoreticall...
The results presented here demonstrate that the Paul Trap Simulator Experiment (PTSX) simulates the ...
Sensitive methods have been developed to measure laser-induced fluorescence from trapped ions by red...
Abstract. The Paul Trap Simulator Experiment (PTSX) is under construction at the Princeton Plasma Ph...
AbstractSensitive methods have been developed to measure laser-induced fluorescence from trapped ion...
AbstractLaser-induced ion fluorescence of laser-desorbed Ba+ ions provides a measure of the relative...
Author Institution:We have developed a technique which allows us to isolate gas phase molecular ions...
Author Institution:We have developed a technique which allows us to isolate gas phase molecular ions...