Nozzle geometry optimization for high-current aluminum ion beam acceleration via direct plasma injection scheme
Abstract
We report the generation of a record aluminum ion beam current exceeding 58 mA at the Al11+ charge state, accelerated to an energy of 5.5 MeV using the direct plasma injection scheme, which integrates a laser ion source (LIS) with a radio frequency quadrupole (RFQ) accelerator. The effect of nozzle geometry on beam extraction was systematically investigated using 8 and 12 mm tapered designs and an 18 mm cylindrical configuration. The 18 mm nozzle achieved the highest Al11+ beam current, while the 12 mm aperture provided a favorable balance between beam intensity and current density. Beam extraction simulations confirmed effective RFQ matching across multiple charge states, and solenoidal field tuning further enhanced plasma collimation. This work not only establishes a new benchmark for high-current ion beam generation but also provides a fundamental understanding of plasma–beam interface dynamics crucial for the next generation of high-intensity particle accelerators, particularly those employing LIS-RFQ systems.
Article Details
Journal Info
Applied Physics Letters
American Institute of Physics
Authors (10)
M. Horana Gamage
Columbia University Irving Medical Center 1 , 622 W 168th St, New York, New York 10032,
G. Garty
Columbia University Irving Medical Center 1 , 622 W 168th St, New York, New York 10032,
A. Cannavo
Brookhaven National Laboratory 2 , Upton, New York 11973,
S. Ikeda
Brookhaven National Laboratory 2 , Upton, New York 11973,
T. Kanesue
Brookhaven National Laboratory 2 , Upton, New York 11973,
T. Sakabe
Brookhaven National Laboratory 2 , Upton, New York 11973,
S. Kondrashev
Brookhaven National Laboratory 2 , Upton, New York 11973,
M. Okamura
Brookhaven National Laboratory 2 , Upton, New York 11973,
G. Ceccio
Nuclear Physics Institute of the Czech Academy of Science 3 , Hlavní 130, 250 68 Husinec-Řež,
K. Takahashi
Department of Pathology, Toho University Ohashi Medical Center, Tokyo, Japan (K.T.).