Heavy ion beam transport through the containment chamber plays a crucial role in all heavy ion fusion (HIF) scenarios. Here, several parameters are used to characterize the operating space for HIF beams; transport modes are assessed in relation to evolving target/accelerator requirements; results of recent relevant experiments and simulations of HIF transport are summarized; and relevant instabilities are reviewed. All transport options still exist, including (1) vacuum ballistic transport, (2) neutralized ballistic transport, and (3) channel-like transport. Presently, the European HIF program favors vacuum ballistic transport, while the US HIF program favors neutralized ballistic transport with channel-like transport as an alternate approa...
In heavy-ion inertial-confinement fusion systems, intense beams of ions must be transported from the...
The High Current Experiment (HCX) is being built to explore heavy-ion beam transport at a scale appr...
Significant experimental and theoretical progress in the U.S heavy-ion fusion (HIF) program is repor...
In heavy ion inertial fusion energy systems, intense beams of ions must be transported from the exit...
In heavy ion inertial fusion energy systems, intense beams of ions must be transported from the exit...
Concepts for heavy-ion fusion (HIF) reactors require the transport of kiloampere ion beams over dist...
In a typical thick-liquid-wall scenario for heavy-ion fusion (HIF), between seventy and two hundred ...
Preliminary designs of an intense heavy-ion beam transport experiment to test issues for Heavy Ion F...
Beams for heavy-ion fusion (HIF) are expected to require substantial neutralization in a target cham...
Transport of intense heavy-ion beams to an inertial-fusion target after final focus is simulated her...
In a heavy-ion driven, inertial confinement fusion power plant, a space-charge dominated beam of hea...
Heavy ion fusion (HIF) requires the acceleration, transport, and focusing of many individual ion bea...
In a heavy-ion driven, inertial confinement fusion power plant, a space-charge dominated beam of hea...
An attractive feature of the inertial fusion energy (IFE) approach to commercial energy production i...
The various technical issues of HIF will be briefly reviewed in this paper. It will be seen that the...
In heavy-ion inertial-confinement fusion systems, intense beams of ions must be transported from the...
The High Current Experiment (HCX) is being built to explore heavy-ion beam transport at a scale appr...
Significant experimental and theoretical progress in the U.S heavy-ion fusion (HIF) program is repor...
In heavy ion inertial fusion energy systems, intense beams of ions must be transported from the exit...
In heavy ion inertial fusion energy systems, intense beams of ions must be transported from the exit...
Concepts for heavy-ion fusion (HIF) reactors require the transport of kiloampere ion beams over dist...
In a typical thick-liquid-wall scenario for heavy-ion fusion (HIF), between seventy and two hundred ...
Preliminary designs of an intense heavy-ion beam transport experiment to test issues for Heavy Ion F...
Beams for heavy-ion fusion (HIF) are expected to require substantial neutralization in a target cham...
Transport of intense heavy-ion beams to an inertial-fusion target after final focus is simulated her...
In a heavy-ion driven, inertial confinement fusion power plant, a space-charge dominated beam of hea...
Heavy ion fusion (HIF) requires the acceleration, transport, and focusing of many individual ion bea...
In a heavy-ion driven, inertial confinement fusion power plant, a space-charge dominated beam of hea...
An attractive feature of the inertial fusion energy (IFE) approach to commercial energy production i...
The various technical issues of HIF will be briefly reviewed in this paper. It will be seen that the...
In heavy-ion inertial-confinement fusion systems, intense beams of ions must be transported from the...
The High Current Experiment (HCX) is being built to explore heavy-ion beam transport at a scale appr...
Significant experimental and theoretical progress in the U.S heavy-ion fusion (HIF) program is repor...