High power ion beam generator systems and methods
Provided herein are high energy ion beam generator systems and methods that provide low cost, high performance, robust, consistent, uniform, low gas consumption and high current/high-moderate voltage generation of neutrons and protons. Such systems and methods find use for the commercial-scale generation of neutrons and protons for a wide variety of research, medical, security, and industrial processes.
1. A system comprising:
a high voltage dome;
at least one high voltage component that is held at high voltage in an accelerator system that generates a high-energy ion beam;
a generator positioned within the high voltage dome and is electrically linked to the at least one high voltage component, wherein the generator provides electrical power to the at least one high voltage component;
a motor positioned outside of the high voltage dome; and
a V-belt extending between the motor and the generator, wherein the V-belt includes a plurality of segments and is: i) a poor electrical conductor, or ii) an electrical non-conductor, further including a first V-belt pulley operably attached to the motor, and a second V-belt pulley operably attached to the power generator and including a pressure vessel; and wherein the generator and the V-belt are positioned within the pressure vessel.
2. The system of claim 1 , wherein the V-belt comprises a polyester-polyurethane composite.
3. The system of claim 1 , wherein the at least one high voltage component comprises an ion source plasma chamber.
4. A method comprising:
generating a high energy ion beam using an accelerator system, wherein: the accelerator system comprises at least one high voltage component and a generator that is electrically linked to the at least one high voltage component; and wherein a motor is coupled to the generator by a V-belt; wherein the V-belt has a plurality of segments and is a poor electrical conductor or an electrical non-conductor; and
providing electrical power to the at least one high voltage component from the generator, wherein a first V-belt pulley is operably attached to the motor, and a second V-belt pulley is operably attached to the power generator and further including a pressure vessel; and wherein the generator and the V-belt are positioned within the pressure vessel.
5. The method of claim 4 , wherein the V-belt comprises a polyester-polyurethane composite.
6. The method of claim 4 , wherein the at least one high voltage component comprises an ion source plasma chamber.