1
views
0
recommends
+1 Recommend
0 collections
    0
    shares
      • Record: found
      • Abstract: not found
      • Article: not found

      Towards ion beam therapy based on laser plasma accelerators

      Read this article at

      ScienceOpenPublisher
      Bookmark
          There is no author summary for this article yet. Authors can add summaries to their articles on ScienceOpen to make them more accessible to a non-specialist audience.

          Related collections

          Most cited references39

          • Record: found
          • Abstract: not found
          • Article: not found

          Laser Electron Accelerator

            Bookmark
            • Record: found
            • Abstract: found
            • Article: not found

            Intense High-Energy Proton Beams from Petawatt-Laser Irradiation of Solids

            An intense collimated beam of high-energy protons is emitted normal to the rear surface of thin solid targets irradiated at 1 PW power and peak intensity 3x10(20) W cm(-2). Up to 48 J ( 12%) of the laser energy is transferred to 2x10(13) protons of energy >10 MeV. The energy spectrum exhibits a sharp high-energy cutoff as high as 58 MeV on the axis of the beam which decreases in energy with increasing off axis angle. Proton induced nuclear processes have been observed and used to characterize the beam.
              Bookmark
              • Record: found
              • Abstract: found
              • Article: not found

              Laser-plasma acceleration of quasi-monoenergetic protons from microstructured targets.

              Particle acceleration based on high intensity laser systems (a process known as laser-plasma acceleration) has achieved high quality particle beams that compare favourably with conventional acceleration techniques in terms of emittance, brightness and pulse duration. A long-term difficulty associated with laser-plasma acceleration--the very broad, exponential energy spectrum of the emitted particles--has been overcome recently for electron beams. Here we report analogous results for ions, specifically the production of quasi-monoenergetic proton beams using laser-plasma accelerators. Reliable and reproducible laser-accelerated ion beams were achieved by intense laser irradiation of solid microstructured targets. This proof-of-principle experiment serves to illuminate the role of laser-generated plasmas as feasible particle sources. Scalability studies show that, owing to their compact size and reasonable cost, such table-top laser systems with high repetition rates could contribute to the development of new generations of particle injectors that may be suitable for medical proton therapy.
                Bookmark

                Author and article information

                Journal
                Acta Oncologica
                Acta Oncologica
                Informa UK Limited
                0284-186X
                1651-226X
                November 02 2017
                August 22 2017
                November 02 2017
                : 56
                : 11
                : 1359-1366
                Affiliations
                [1 ] Helmholtz-Zentrum Dresden-Rossendorf, Dresden, Germany;
                [2 ] OncoRay – National Center for Radiation Research in Oncology, Faculty of Medicine and University Hospital Carl Gustav Carus, Technische Universität Dresden, Dresden, Germany;
                [3 ] German Cancer Consortium (DKTK), Dresden, Germany;
                [4 ] Technische Universität Dresden, Dresden, Germany
                Article
                10.1080/0284186X.2017.1355111
                376d1995-802a-450f-8b13-3e253ca55d36
                © 2017
                History

                Comments

                Comment on this article