Commissioning of low particle flux for proton beams at MedAustron

[1]  M. Stock,et al.  Clinical implementation and commissioning of the MedAustron Particle Therapy Accelerator for non-isocentric scanned proton beam treatments. , 2019, Medical physics.

[2]  David Cussans,et al.  The AIDA-2020 TLU: a flexible trigger logic unit for test beam facilities , 2019, Journal of Instrumentation.

[3]  R. Ete,et al.  EUDAQ2—A flexible data acquisition software framework for common test beams , 2019, Journal of Instrumentation.

[4]  Alexander Utz,et al.  The technological basis for adaptive ion beam therapy at MedAustron: Status and outlook. , 2017, Zeitschrift fur medizinische Physik.

[5]  M. M. Kolwalkar,et al.  The Belle II SVD data readout system , 2017 .

[6]  A Mairani,et al.  Characterization of a commercial scintillation detector for 2-D dosimetry in scanned proton and carbon ion beams. , 2017, Physica medica : PM : an international journal devoted to the applications of physics to medicine and biology : official journal of the Italian Association of Biomedical Physics.

[7]  J. Ziegler,et al.  Analytical model for ion stopping power and range in the therapeutic energy interval for beams of hydrogen and heavier ions , 2016, Physics in medicine and biology.

[8]  M. Pivi,et al.  Betatron Core Driven Slow Extraction at CNAO and MedAustron , 2016 .

[9]  Fabio Sauli,et al.  Development of a fast proton range radiography system for quality assurance in hadrontherapy , 2013 .

[10]  M. Repovz,et al.  OVERVIEW OF THE BEAM DIAGNOSTICS IN THE MEDAUSTRON ACCELERATOR : DESIGN CHOICES AND TEST BEAM COMMISSIONING , 2012 .

[11]  M. Benedikt,et al.  MedAustron—Project overview and status , 2011 .

[12]  Michael Benedikt,et al.  Overview of the MedAustron design and technology choices , 2010 .

[13]  Andrea Neviani,et al.  Design and results from the APV25, a deep sub-micron CMOS front-end chip for the CMS tracker , 2001 .

[14]  Michael Benedikt,et al.  A NEW CONCEPT FOR THE CONTROL OF A SLOW- EXTRACTED BEAM IN A LINE WITH ROTATIONAL OPTICS, PART II* , 1999 .

[15]  H. Wiedemann Particle accelerator physics , 1993 .

[16]  K. Perez Nuclear Instruments and Methods in Physics Research Section A: Accelerators, Spectrometers, Detectors and Associated Equipment , 2014 .

[17]  Wayne D Newhauser,et al.  Calculation of water equivalent thickness of materials of arbitrary density , elemental composition and thickness in proton beam irradiation , 2009 .

[18]  M. Berger,et al.  NISTホームページ, Stopping-Power and Range Tables for Electrons, Protons, and Helium Ions , 2008 .