Plasmas are employed as a source of unbound electrons for charge neutralizing heavy ion beams to allow them to focus to a small spot size. Calculations suggest that plasma at a density of 1-100 times the ion beam density and at a length {approx} 0.1-1 m would be suitable. To produce one-meter plasma, large-volume plasma sources based upon ferroelectric ceramics are being developed. These sources have the advantage of being able to increase the length of the plasma and operate at low neutral pressures. The source utilizes the ferroelectric ceramic BaTiO{sub 3} to form metal plasma. The drift tube inner surface of the Neutralized Drift Compression Experiment (NDCX) will be covered with ceramic, and high voltage ({approx} 1-5 kV) applied betwe...
Typical ion driven warm dense matter experiment requires a plasma density of 1014/cm3 to meet the ch...
Ferroelectric disks, coated with proper electrodes, can easily produce a dense plasma cloud when exc...
The efficiency and lifetime of a plasma source or charged particle emitter is partially limited by t...
Plasmas are a source of unbound electrons for charge neutralizing intense heavy ion beams to allow t...
Plasma are a source of unbound electrons for charge neutralizing intense heavy ion beams to focus th...
Plasmas are a source of unbound electrons for charge neutralizing intense heavy ion beams to focus t...
Highly ionized plasmas are being employed as a medium for charge neutralizing heavy ion beams in ord...
Development of a 1-m plasma source for heavy ion beam neutral pressures. The source will utilize the...
Abstract only availableAtmospheric plasma has applications ranging from semiconductor fabrication to...
Near-perfect space-charge neutralization is required for the transverse compression of high perveanc...
Large-space-scale and long-time-scale plasma flow simulations are executed in order to study the spa...
Highly ionized plasmas are being used as a medium for charge neutralizing heavy ion beams in order t...
Highly ionized plasmas are being considered as a medium for charge neutralizing heavy ion beams in o...
Simulations suggest that the plasma density must exceed the beam density throughout the drift compre...
With increasing rf power, the electron concentration in the plasma of electron cyclotron resonance (...
Typical ion driven warm dense matter experiment requires a plasma density of 1014/cm3 to meet the ch...
Ferroelectric disks, coated with proper electrodes, can easily produce a dense plasma cloud when exc...
The efficiency and lifetime of a plasma source or charged particle emitter is partially limited by t...
Plasmas are a source of unbound electrons for charge neutralizing intense heavy ion beams to allow t...
Plasma are a source of unbound electrons for charge neutralizing intense heavy ion beams to focus th...
Plasmas are a source of unbound electrons for charge neutralizing intense heavy ion beams to focus t...
Highly ionized plasmas are being employed as a medium for charge neutralizing heavy ion beams in ord...
Development of a 1-m plasma source for heavy ion beam neutral pressures. The source will utilize the...
Abstract only availableAtmospheric plasma has applications ranging from semiconductor fabrication to...
Near-perfect space-charge neutralization is required for the transverse compression of high perveanc...
Large-space-scale and long-time-scale plasma flow simulations are executed in order to study the spa...
Highly ionized plasmas are being used as a medium for charge neutralizing heavy ion beams in order t...
Highly ionized plasmas are being considered as a medium for charge neutralizing heavy ion beams in o...
Simulations suggest that the plasma density must exceed the beam density throughout the drift compre...
With increasing rf power, the electron concentration in the plasma of electron cyclotron resonance (...
Typical ion driven warm dense matter experiment requires a plasma density of 1014/cm3 to meet the ch...
Ferroelectric disks, coated with proper electrodes, can easily produce a dense plasma cloud when exc...
The efficiency and lifetime of a plasma source or charged particle emitter is partially limited by t...