Different cyclotrons utilize different techniques to focus ions

The uniform field cyclotron was the first to be designed and developed for scientific use during at the onset of the technology. Thus, the cyclotron has a lot of historical significance in the scientific discipline. Each of the cyclotrons is has characteristics. One such is the separate sector cyclotron. The cyclotron is characterized by several separate sectors that bend the magnetizing force into a number of sectors. The cyclotron operates on the principle of molarity. The modularization technique is used to construct the constituent magnets to equip them with the capacity to apply accelerating forces on the rf feeds that lie between the sectors (Su, Wagner & Grobe, 3)

On the other hand, the spiral cyclotron operates on the principle which recognizes the spiral boundaries which have a pole positioned at the center of the spiral. The high field regions at the boundaries of the cyclotron enable the moving ions to be inclined while in motion. On the other hand, a vertical confinement of the moving ions can be achieved by using an edge focusing mechanism. To further increase the vertical confinement of the ions, two techniques are used. These include the focusing and defocusing techniques (Su, Wagner & Grobe, 4).

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Different cyclotrons utilize different techniques to focus ions. Superconducting cyclotrons utilize to a significant extent the focusing technique. Ions in the cyclotron which utilize the technique are characterized by a high degree of compactness which is a desirable characteristic for cyclotrons. Additionally, the predictability of the electric field of the cyclotron can be made more accurate (Su, Wagner & Grobe, 5).

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