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MOPB007 |
SRF Gun Beam Characterization - Phase Space and Dark Current Measurements at ELBE |
38 |
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- E. Panofski, A. Jankowiak, T. Kamps
HZB, Berlin, Germany
- P.N. Lu, J. Teichert
HZDR, Dresden, Germany
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RF photoelectron sources with superconducting cavities provide the potential to generate high quality, high brightness electron beams for future accelerator applications. At Helmholtz-Zentrum Dresden Rossendorf, such an electron source was operated for many years. The commissioning of an improved SRF Gun with a new high-performance gun cavity with low field emission and a superconducting solenoid inside the gun cryomodule (SRF Gun II) has started in June 2014. Simulations of the experimental set-up with ASTRA and ELEGANT were performed. First low current measurements as well as studies of unwanted beam transport using SRF Gun II with Cu photocathode and an acceleration gradient up to 9 MV/m will be presented. First beam characterization of the SRF Gun in combination with ELBE, a two-stage superconducting linear accelerator will be discussed.
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Poster MOPB007 [1.263 MB]
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MOPB009 |
Jitter Analysis at CW Repetition Rate With Large Spectral Range and High Resolution |
43 |
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- M. Kuntzsch, M. Gensch, U. Lehnert, P. Michel, R. Schurig, J. Teichert
HZDR, Dresden, Germany
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At the superconducting CW accelerator ELBE electron bunch diagnostics has been installed recently, enabling the investigation of bunch arrival-time jitter and electron energy fluctuations for varying bunch compression states. Using these diagnostic systems, a comprehensive investigation has been performed that reveals the influence of the bunch compression to spectral noise components up to a frequency of 100 kHz (i.e. 200 kHz bunch repetition rate). The transformation of arrival-time jitter into energy jitter and vice versa can be observed. The perfomances of a DC thermionic and a SRF photoinjector at the CW- SRF Linac ELBE are compared and an interpretation for different noise components is presented.
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