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A pulsed high-voltage decelerator system to deliver low-energy antiprotons

Husson, A. (author)
Kim, B. H. (author)
Welker, A. (author)
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Charlton, M. (author)
Choi, J. J. (author)
Chung, M. (author)
Cladé, P. (author)
Comini, P. (author)
Crépin, P. -P. (author)
Crivelli, P. (author)
Dalkarov, O. (author)
Debu, P. (author)
Dodd, L. (author)
Douillet, A. (author)
Guellati-Khélifa, S. (author)
Garroum, N. (author)
Hervieux, P. -A. (author)
Hilico, L. (author)
Indelicato, P. (author)
Janka, G. (author)
Jonsell, Svante (author)
Stockholms universitet,Fysikum
Karr, J. -P. (author)
Kim, E. -S. (author)
Kim, S. K. (author)
Ko, Y. (author)
Kosinski, T. (author)
Kuroda, N. (author)
Latacz, B. (author)
Lee, H. (author)
Lee, J. (author)
Leite, A. M. M. (author)
Lévêque, K. (author)
Lim, E. (author)
Liszkay, L. (author)
Lotrus, P. (author)
Lunney, D. (author)
Manfredi, G. (author)
Mansoulié, B. (author)
Matusiak, M. (author)
Mornacchi, G. (author)
Nesvizhevsky, V. V. (author)
Nez, F. (author)
Niang, S. (author)
Nishi, R. (author)
Nourbaksh, S. (author)
Park, K. H. (author)
Paul, N. (author)
Pérez, P. (author)
Procureur, S. (author)
Radics, B. (author)
Regenfus, C. (author)
Reymond, J. -M. (author)
Reynaud, S. (author)
Roussé, J. -Y. (author)
Rousselle, O. (author)
Rubbia, A. (author)
Rzadkiewicz, J. (author)
Sacquin, Y. (author)
Schmidt-Kaler, F. (author)
Staszczak, M. (author)
Tuchming, B. (author)
Vallage, B. (author)
Voronin, A. (author)
van der Werf, D. P. (author)
Wolf, S. (author)
Won, D. (author)
Wronka, S. (author)
Yamazaki, Y. (author)
Yoo, K. -H. (author)
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 (creator_code:org_t)
Elsevier BV, 2021
2021
English.
In: Nuclear Instruments and Methods in Physics Research Section A. - : Elsevier BV. - 0168-9002 .- 1872-9576. ; 1002
  • Journal article (peer-reviewed)
Abstract Subject headings
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  • The GBAR (Gravitational Behavior of Antihydrogen at Rest) experiment at CERN requires efficient deceleration of 100 keV antiprotons provided by the new ELENA synchrotron ring to synthesize antihydrogen. This is accomplished using electrostatic deceleration optics and a drift tube that is designed to switch from -99 kV to ground when the antiproton bunch is inside – essentially a charged particle “elevator” – producing a 1 keV pulse. We describe the simulation, design, construction and successful testing of the decelerator device at -92 kV on-line with antiprotons from ELENA.

Subject headings

NATURVETENSKAP  -- Fysik (hsv//swe)
NATURAL SCIENCES  -- Physical Sciences (hsv//eng)

Keyword

Antihydrogen
General Relativity
Charged-particle optics
Ion-optic simulations

Publication and Content Type

ref (subject category)
art (subject category)

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