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| facilities:irradiation:bern_medical_cyclotron [22:43 24/05/2022] – created jhulsman | facilities:irradiation:bern_medical_cyclotron [17:28 25/05/2022] (current) – [Facility] jhulsman | ||
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| ====== Bern Medical Cyclotron ====== | ====== Bern Medical Cyclotron ====== | ||
| + | ===== References ===== | ||
| + | * [[https:// | ||
| + | * {{ : | ||
| + | * [[https:// | ||
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| + | ===== Beam Parameters ===== | ||
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| + | ^ Beam Source ^ Particle Type ^ Flux ($cm^{-2} s^{-1}$) ^ Energy ^ Notes ^ | ||
| + | | IBA Cyclone 18/18 | proton | $10^9$ to $10^{12}$ | 18MeV | 8 exit ports for targets/ | ||
| + | | IBA Cyclone 18/18 | neutrons | ~$10^9$ | TBD | produced through converter targets at the end of the BTL| | ||
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| + | ===== Facility ===== | ||
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| + | The Bern medical cyclotron is a facility which focuses on the production of radiopharmaceuticals as well general scientific research. The former done through [[https:// | ||
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| + | $H_{2}$ molecules are converted into $H^{-}$ ions through an electrical arc and subsequently accelerated inside the cyclotron up to 18MeV. Before exiting, the electrons are stripped from the $H^{-}$ ions to produce a pure proton beam. A schematic of the facility is shown in the figure below | ||
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| + | The protons are directed into a separate bunker (as depicted in the figure below) via a beam transfer line. It is 6.5m long and consists of 1 dipole doublet for horizontal/ | ||
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| + | Collimators allow for proton beams to have an area of $1cm^2 \times 1 cm^2$ to $3cm^2 \times 3 cm^2$. Setups can be placed in front of the collimator on a motorized linear actuator. Setups can be irradiated in " | ||