Longitudinal bunching factors in excess of 70 of a 300-keV, 27-mA K^{+} ion beam have been demonstrated in the neutralized drift compression experiment [P. K. Roy et al., Phys. Rev. Lett. 95, 234801 (2005)PRLTAO0031-900710.1103/PhysRevLett.95.234801] in rough agreement with particle-in-cell source-to-target simulations. A key aspect of these experiments is that a preformed plasma provides charge neutralization of the ion beam in the last one meter drift region where the beam perveance becomes large. The simulations utilize the measured ion source temperature, diode voltage, and induction-bunching-module voltage waveforms in order to determine the initial beam longitudinal phase space which is critical to accurate modeling of the longitudina...
In heavy-ion inertial-confinement fusion systems, intense beams of ions must be transported from the...
In heavy-ion inertial-confinement fusion systems, intense beams of ions must be transported from the...
Longitudinal compression of a velocity-tailored, intense neutralized K{sup +} beam at 300 keV, 25 mA...
Longitudinal compression factors in excess of 50 of a 300-keV, 20-mA K+ ion beam have been demonstra...
Longitudinal bunch compression of intense ion beams for warm dense matter and heavy ion fusion appli...
Heavy ion drivers for warm dense matter and heavy ion fusion applications use intense charge bunches...
The Heavy-Ion Fusion Sciences Virtual National Laboratory is pursuing an approach to target heating ...
Longitudinal compression of space-charge dominated beams can be achieved by imposing a head-to-tail ...
The Heavy-Ion Fusion Sciences Virtual National Laboratory is pursuing an approach to target heating ...
The Heavy-Ion Fusion Sciences Virtual National Laboratory is pursuing an approach to target heating ...
Heavy ion fusion (HIF) requires the acceleration, transport, and focusing of many individual ion bea...
In heavy ion inertial confinement fusion systems, intense beams of ions must be transported from the...
In heavy ion inertial confinement fusion systems, intense beams of ions must be transported from the...
Intense beams of heavy ions are well suited for heating matter to regimes of emerging interest. A ne...
Heavy ion drivers for heavy ion fusion and high energy density physics applications use space-charge...
In heavy-ion inertial-confinement fusion systems, intense beams of ions must be transported from the...
In heavy-ion inertial-confinement fusion systems, intense beams of ions must be transported from the...
Longitudinal compression of a velocity-tailored, intense neutralized K{sup +} beam at 300 keV, 25 mA...
Longitudinal compression factors in excess of 50 of a 300-keV, 20-mA K+ ion beam have been demonstra...
Longitudinal bunch compression of intense ion beams for warm dense matter and heavy ion fusion appli...
Heavy ion drivers for warm dense matter and heavy ion fusion applications use intense charge bunches...
The Heavy-Ion Fusion Sciences Virtual National Laboratory is pursuing an approach to target heating ...
Longitudinal compression of space-charge dominated beams can be achieved by imposing a head-to-tail ...
The Heavy-Ion Fusion Sciences Virtual National Laboratory is pursuing an approach to target heating ...
The Heavy-Ion Fusion Sciences Virtual National Laboratory is pursuing an approach to target heating ...
Heavy ion fusion (HIF) requires the acceleration, transport, and focusing of many individual ion bea...
In heavy ion inertial confinement fusion systems, intense beams of ions must be transported from the...
In heavy ion inertial confinement fusion systems, intense beams of ions must be transported from the...
Intense beams of heavy ions are well suited for heating matter to regimes of emerging interest. A ne...
Heavy ion drivers for heavy ion fusion and high energy density physics applications use space-charge...
In heavy-ion inertial-confinement fusion systems, intense beams of ions must be transported from the...
In heavy-ion inertial-confinement fusion systems, intense beams of ions must be transported from the...
Longitudinal compression of a velocity-tailored, intense neutralized K{sup +} beam at 300 keV, 25 mA...