Experimental demonstration of novel beam characterization using a polarizable X-band transverse deflection structure

Abstract The PolariX TDS (Polarizable X-Band Transverse Deflection Structure) is an innovative TDS-design operating in the X-band frequency-range. The design gives full control of the streaking plane, which can be tuned in order to characterize the projections of the beam distribution onto arbitrary...

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Autores principales: B. Marchetti, A. Grudiev, P. Craievich, R. Assmann, H.-H. Braun, N. Catalan Lasheras, F. Christie, R. D’Arcy, R. Fortunati, R. Ganter, P. González Caminal, M. Hoffmann, M. Huening, S. M. Jaster-Merz, R. Jonas, F. Marcellini, D. Marx, G. McMonagle, J. Osterhoff, M. Pedrozzi, E. Prat Costa, S. Reiche, M. Reukauff, S. Schreiber, G. Tews, M. Vogt, S. Wesch, W. Wuensch
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Publicado: Nature Portfolio 2021
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Acceso en línea:https://doaj.org/article/fa99f4cf73144463a793d54b14a8e832
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spelling oai:doaj.org-article:fa99f4cf73144463a793d54b14a8e8322021-12-02T14:26:55ZExperimental demonstration of novel beam characterization using a polarizable X-band transverse deflection structure10.1038/s41598-021-82687-22045-2322https://doaj.org/article/fa99f4cf73144463a793d54b14a8e8322021-02-01T00:00:00Zhttps://doi.org/10.1038/s41598-021-82687-2https://doaj.org/toc/2045-2322Abstract The PolariX TDS (Polarizable X-Band Transverse Deflection Structure) is an innovative TDS-design operating in the X-band frequency-range. The design gives full control of the streaking plane, which can be tuned in order to characterize the projections of the beam distribution onto arbitrary transverse axes. This novel feature opens up new opportunities for detailed characterization of the electron beam. In this paper we present first measurements of the Polarix TDS at the FLASHForward beamline at DESY, including three-dimensional reconstruction of the charge-density distribution of the bunch and slice emittance measurements in both transverse directions. The experimental results open the path toward novel and more extensive beam characterization in the direction of multi-dimensional-beam-phase-space reconstruction.B. MarchettiA. GrudievP. CraievichR. AssmannH.-H. BraunN. Catalan LasherasF. ChristieR. D’ArcyR. FortunatiR. GanterP. González CaminalM. HoffmannM. HueningS. M. Jaster-MerzR. JonasF. MarcelliniD. MarxG. McMonagleJ. OsterhoffM. PedrozziE. Prat CostaS. ReicheM. ReukauffS. SchreiberG. TewsM. VogtS. WeschW. WuenschNature PortfolioarticleMedicineRScienceQENScientific Reports, Vol 11, Iss 1, Pp 1-14 (2021)
institution DOAJ
collection DOAJ
language EN
topic Medicine
R
Science
Q
spellingShingle Medicine
R
Science
Q
B. Marchetti
A. Grudiev
P. Craievich
R. Assmann
H.-H. Braun
N. Catalan Lasheras
F. Christie
R. D’Arcy
R. Fortunati
R. Ganter
P. González Caminal
M. Hoffmann
M. Huening
S. M. Jaster-Merz
R. Jonas
F. Marcellini
D. Marx
G. McMonagle
J. Osterhoff
M. Pedrozzi
E. Prat Costa
S. Reiche
M. Reukauff
S. Schreiber
G. Tews
M. Vogt
S. Wesch
W. Wuensch
Experimental demonstration of novel beam characterization using a polarizable X-band transverse deflection structure
description Abstract The PolariX TDS (Polarizable X-Band Transverse Deflection Structure) is an innovative TDS-design operating in the X-band frequency-range. The design gives full control of the streaking plane, which can be tuned in order to characterize the projections of the beam distribution onto arbitrary transverse axes. This novel feature opens up new opportunities for detailed characterization of the electron beam. In this paper we present first measurements of the Polarix TDS at the FLASHForward beamline at DESY, including three-dimensional reconstruction of the charge-density distribution of the bunch and slice emittance measurements in both transverse directions. The experimental results open the path toward novel and more extensive beam characterization in the direction of multi-dimensional-beam-phase-space reconstruction.
format article
author B. Marchetti
A. Grudiev
P. Craievich
R. Assmann
H.-H. Braun
N. Catalan Lasheras
F. Christie
R. D’Arcy
R. Fortunati
R. Ganter
P. González Caminal
M. Hoffmann
M. Huening
S. M. Jaster-Merz
R. Jonas
F. Marcellini
D. Marx
G. McMonagle
J. Osterhoff
M. Pedrozzi
E. Prat Costa
S. Reiche
M. Reukauff
S. Schreiber
G. Tews
M. Vogt
S. Wesch
W. Wuensch
author_facet B. Marchetti
A. Grudiev
P. Craievich
R. Assmann
H.-H. Braun
N. Catalan Lasheras
F. Christie
R. D’Arcy
R. Fortunati
R. Ganter
P. González Caminal
M. Hoffmann
M. Huening
S. M. Jaster-Merz
R. Jonas
F. Marcellini
D. Marx
G. McMonagle
J. Osterhoff
M. Pedrozzi
E. Prat Costa
S. Reiche
M. Reukauff
S. Schreiber
G. Tews
M. Vogt
S. Wesch
W. Wuensch
author_sort B. Marchetti
title Experimental demonstration of novel beam characterization using a polarizable X-band transverse deflection structure
title_short Experimental demonstration of novel beam characterization using a polarizable X-band transverse deflection structure
title_full Experimental demonstration of novel beam characterization using a polarizable X-band transverse deflection structure
title_fullStr Experimental demonstration of novel beam characterization using a polarizable X-band transverse deflection structure
title_full_unstemmed Experimental demonstration of novel beam characterization using a polarizable X-band transverse deflection structure
title_sort experimental demonstration of novel beam characterization using a polarizable x-band transverse deflection structure
publisher Nature Portfolio
publishDate 2021
url https://doaj.org/article/fa99f4cf73144463a793d54b14a8e832
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