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RIS citation export for WEPG10: Phase and Energy Stabilization System at the S-Dalinac

TY - CONF
AU - Bahlo, T.
AU - Burandt, C.
AU - Hug, F.
AU - Jürgensen, L.E.
AU - Kürzeder, T.
AU - Pietralla, N.
AU - Wissmann, J.
ED - Schaa, Volker RW
TI - Phase and Energy Stabilization System at the S-Dalinac
J2 - Proc. of IBIC2016, Barcelona, Spain, Sept. 13-18, 2016
C1 - Barcelona, Spain
T2 - International Beam Instrumentation Conference
T3 - 5
LA - english
AB - The Superconducting Darmstadt Linear Accelerator S‑DALINAC is a recirculating electron accelerator with a design energy of 130 MeV operating in cw. Before entering the 30 MeV main accelerator the low energetic electron beam passes both a normal-conducting injector beamline preparing the beam's 3 GHz time structure as well as a superconducting 10 MeV injector beamline for preacceleration. Since the superconducting injector accelerates on-crest while the main accelerator accelerates off-crest the beam phase is crucial for the efficiency of the acceleration process and the minimization of the energy spread. Due to thermal drifts of the normal-conducting injector cavities this injection phase varies by about 0.2 degree over a timescale of an hour. In order to compensate for these drifts, a high level phase controller has been implemented. Additionally a low-energy scraper system has been installed between the injector and main linac in order to lock both the phase and the energy spread at the linac entrance. We will present the hardware for the phase controller, the control algorithm and the scraper setup. A report on measurements showing the effect of both systems will be given.
PB - JACoW
CP - Geneva, Switzerland
SP - 639
EP - 642
KW - electron
KW - controls
KW - linac
KW - cavity
KW - injection
DA - 2017/02
PY - 2017
SN - 978-3-95450-177-9
DO - 10.18429/JACoW-IBIC2016-WEPG10
UR - http://jacow.org/ibic2016/papers/wepg10.pdf
ER -