In the MEQALAC (Multiple Electrostatic Quadrupole Linear Accelerator) multiple N+ ion beams are accelerated in 32 rf gaps, which are part of a modified interdigital-H-resonator operating at 25 MHz. The transverse focusing of the intense ion beams is achieved by means of sets of miniaturized electrostatic quadrupoles. Results are presented which show that the ion beams are accelerated to 1 MeV. The energy spread is less than 8%. The bunches are shorter than a quarter of the rf period, the peak current is 0.90 mA. The maximum time-averaged beam current measured is 0.20 mA in a single channel, in four channels it is 0.56 mA. This is less than the theoretically predicted current. It is shown that the smaller transmission is due mainly to misali...
We report on the development of multi-beam radio frequency (RF) linear ion accelerators that are for...
The development of the "modified " 4-rod RFQ linac system has been completed and a series ...
High energy heavy ions have been under;tudy for Inertial fusion applications for 8ome time. The purp...
In the MEQALAC (Multiple Electrostatic Quadrupole Linear Accelerator) multiple N+ ion beams are acce...
kcelerator) multiple N+ ion beams are accelerated in a number of gaps which carry a rfvnlrage. The t...
Multiple Electrostatic Quadrupole Array Linear Accelerators (MEQALACs) provide an opportunity to rea...
MEQALAC stands for Multiple Electrostatic Quadrupole Array Linear Accelerator. The first model, M1, ...
A continuous dc beam can be gradually bunched into a series of buckets in radio frequency quadrupole...
We report on the development of a radio frequency (RF) linear accelerator (linac) for multiple-ion b...
We report on the development of a radio frequency (RF) linear accelerator (linac) for multiple-ion b...
A novel method of transporting and accelerating high brightness ion beams, called MEQALAC, has been ...
We report on the development of multi-beam RF linear ion accelerators that are formed from stacks of...
Several practical aspects of rf acceleration (by a MEQALAC accelerator, for example) of positive and...
A new approach for a compact radio-frequency (RF) accelerator structure is presented. The new accele...
We report on the first through-wafer silicon-based Electrostatic Quadrupole Array (ESQA) to focus hi...
We report on the development of multi-beam radio frequency (RF) linear ion accelerators that are for...
The development of the "modified " 4-rod RFQ linac system has been completed and a series ...
High energy heavy ions have been under;tudy for Inertial fusion applications for 8ome time. The purp...
In the MEQALAC (Multiple Electrostatic Quadrupole Linear Accelerator) multiple N+ ion beams are acce...
kcelerator) multiple N+ ion beams are accelerated in a number of gaps which carry a rfvnlrage. The t...
Multiple Electrostatic Quadrupole Array Linear Accelerators (MEQALACs) provide an opportunity to rea...
MEQALAC stands for Multiple Electrostatic Quadrupole Array Linear Accelerator. The first model, M1, ...
A continuous dc beam can be gradually bunched into a series of buckets in radio frequency quadrupole...
We report on the development of a radio frequency (RF) linear accelerator (linac) for multiple-ion b...
We report on the development of a radio frequency (RF) linear accelerator (linac) for multiple-ion b...
A novel method of transporting and accelerating high brightness ion beams, called MEQALAC, has been ...
We report on the development of multi-beam RF linear ion accelerators that are formed from stacks of...
Several practical aspects of rf acceleration (by a MEQALAC accelerator, for example) of positive and...
A new approach for a compact radio-frequency (RF) accelerator structure is presented. The new accele...
We report on the first through-wafer silicon-based Electrostatic Quadrupole Array (ESQA) to focus hi...
We report on the development of multi-beam radio frequency (RF) linear ion accelerators that are for...
The development of the "modified " 4-rod RFQ linac system has been completed and a series ...
High energy heavy ions have been under;tudy for Inertial fusion applications for 8ome time. The purp...