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Autor:
Weih, Simon, Arnold, Michaela, Dutine, Manuel, Enders, Joachim, Grewe, Ruben, Jürgensen, Lars, Pietralla, Norbert, Schließmann, Felix, Steinhorst, Manuel
The superconducting part of the injector section of the superconducting Darmstadt electron linear accelerator (S-DALINAC) [1] consisted of one five-cell capture cavity and two 20-cell cavities at 3 GHz resonance frequency. All of them were geometrica
Externí odkaz:
https://explore.openaire.eu/search/publication?articleId=doi_________::e64c5db8a54b652bda14bc3227ce408c
Autor:
Weih, Simon
The former 5-cell capture cavity of the S-DALINAC injector was insufficiently adapted to the beam energies provided by the electron sources. This led to an inefficient energy gain and a deterioration of the beam quality in this acceleration structure
Externí odkaz:
https://explore.openaire.eu/search/publication?articleId=doi_dedup___::0c111d056e368bcc995fa2dd5d60a699
http://tuprints.ulb.tu-darmstadt.de/20632/
http://tuprints.ulb.tu-darmstadt.de/20632/
Autor:
Steinhorst, Manuel, Arnold, Michaela, Bahlo, Thore, Grewe, Ruben, Jürgensen, Lars, Pforr, Jonas, Pietralla, Norbert, Schließmann, Felix, Weih, Simon
The recirculating superconducting Darmstadt linear accelerator S-DALINAC [1] is one of the main research instruments at the institute for nuclear physics at the TU Darmstadt. It is operating in cw mode at beam currents of up to 20 uA with energies of
Externí odkaz:
https://explore.openaire.eu/search/publication?articleId=doi_________::c9926f4c5c2174715db3ca0b927a85fb
Autor:
Weih, Simon, Arnold, Michaela, Bazyl, Dmitry, De Gersem, Herbert, Enders, Joachim, Müller, Wolfgang, Pietralla, Norbert
The superconducting injector section of the S-DALINAC (superconducting Darmstadt linear electron accelerator) [1] constists of two cryomodules with three 3-GHz SRF cavities in total. The first cavity of this pre-accelerator is currently a 5-cell stru
Externí odkaz:
https://explore.openaire.eu/search/publication?articleId=doi_________::654d26033f8ab34869b1ff99ba22e81c
Recently, the S-DALINAC has successfully passed the first ERL tests. One of the critical requirements for further operation in the ERL regime is minimising the longitudinal energy spread of the electron beam. One of the major sources for the current
Externí odkaz:
https://explore.openaire.eu/search/publication?articleId=doi_________::74cc1d5a4b293d3fde790efd5fd3c992
Autor:
Weih, Simon, Arnold, Michaela, Bazyl, Dmitry, De Gersem, Herbert, Enders, Joachim, Müller, Wolfgang, Pietralla, Norbert
For the injector of the superconducting Darmstadt electron linear accelerator S-DALINAC, the design of a new capture cavity was recently completed. This beta-reduced structure will optimize the capture of low-energy electron bunches from the gun sect
Externí odkaz:
https://explore.openaire.eu/search/publication?articleId=doi_________::694e1432790456a3bde5fe779a998e25
In order to reduce the energy spread and to be able to use a 200 keV spin-polarized electron source, the initial part of the injector linac of the superconducting Darmstadt electron linear accelerator S-DALINAC needs to be upgraded. The decisions on
Externí odkaz:
https://explore.openaire.eu/search/publication?articleId=doi_________::99bf30bef46e2cb7fd1b462ad770355b
Autor:
Weih, Simon, Eggert, Tobias, Enders, Joachim, Espig, Martin, Fritzsche, Yuliya, Kurichiyanil, Neeraj, Wagner, Markus
For high-current applications of GaAs photocathodes it is necessary to maximize the charge lifetime of the cathode material to ensure reliable operation. By means of cryogenic cooling of the electrode, the local vacuum conditions around the source ca
Externí odkaz:
https://explore.openaire.eu/search/publication?articleId=doi_________::258a9f5b0a5e90140da387f80b1894a8
Autor:
Jürgensen, Lars, Bahlo, Thore, Burandt, Christoph, Hug, Florian, Kürzeder, Thorsten, Pietralla, Norbert, Weih, Simon, Wissmann, Jan
The superconducting Darmstadt linear electron accelerator (S-DALINAC) of the Institute for Nuclear Physics at Technische Universität Darmstadt delivers electron beams in cw-mode with energies up to 130 MeV. The accelerator consists of a 10-MeV injec
Externí odkaz:
https://explore.openaire.eu/search/publication?articleId=doi_________::8f4f52e9e7641789963748a025f3ff8c