Overview of FLASHlab@PITZ: the new R&D platform for FLASH radiation therapy and radiation biology

An R&D platform for electron FLASH radiation therapy and radiation biology is being prepared at the Photo Injector Test facility at DESY in Zeuthen (FLASH lab @PITZ). This platform is based on the unique beam parameters available at PITZ: ps scale electron bunches of up to 22 MeV with up to 5 nC...

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Veröffentlicht in:Journal of physics. Conference series 2024-01, Vol.2687 (9), p.92006
Hauptverfasser: Li, X.-K., Amirkhanyan, Z., Aftab, N., Boonpornprasert, P., Dmytriiev, D., Frohme, M., Georgiev, G., Grebinyk, A., Gross, M., Hoffmann, A., Komar, Y., Krasilnikov, M., Loisch, G., Oppelt, A., Richard, C., Riemer, F., Philipp, S., Schmitz, M., Müller, F., Obier, F., Vashchenko, G., Worm, S., Stephan, F.
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Sprache:eng
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Zusammenfassung:An R&D platform for electron FLASH radiation therapy and radiation biology is being prepared at the Photo Injector Test facility at DESY in Zeuthen (FLASH lab @PITZ). This platform is based on the unique beam parameters available at PITZ: ps scale electron bunches of up to 22 MeV with up to 5 nC bunch charge at MHz bunch repetition rate in bunch trains of up to 1 ms in length repeating at 1 to 10 Hz. It works together with the Technical University of Applied Sciences Wildau (TH Wildau) as partner in close vicinity for the biological resources. A startup beamline has been installed to allow dosimetry studies and irradiation experiments on chemical, biochemical and biological samples after a 60-degree dispersive arm. The measured dose and dose rates under different beam conditions and first experimental results will be reported in this paper. In addition, a dedicated beamline for FLASH lab @PITZhas been designed for better control of the high brightness electron beams. This includes a dogleg to translate the beam and a 2D kicker system to scan the tiny beam focused by quadrupoles across the samples within less than 1 ms. Simulation studies will be presented to demonstrate the extremely flexible dose parameters with various irradiation options for electron FLASH radiation therapy and radiation biology studies.
ISSN:1742-6588
1742-6596
DOI:10.1088/1742-6596/2687/9/092006