PUMA, antiProton unstable matter annihilationPUMA collaboration

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作者
T. Aumann
W. Bartmann
O. Boine-Frankenheim
A. Bouvard
A. Broche
F. Butin
D. Calvet
J. Carbonell
P. Chiggiato
H. De Gersem
R. De Oliveira
T. Dobers
F. Ehm
J. Ferreira Somoza
J. Fischer
M. Fraser
E. Friedrich
A. Frotscher
M. Gomez-Ramos
J.-L. Grenard
A. Hobl
G. Hupin
A. Husson
P. Indelicato
K. Johnston
C. Klink
Y. Kubota
R. Lazauskas
S. Malbrunot-Ettenauer
N. Marsic
W. F. O Müller
S. Naimi
N. Nakatsuka
R. Necca
D. Neidherr
G. Neyens
A. Obertelli
Y. Ono
S. Pasinelli
N. Paul
E. C. Pollacco
D. Rossi
H. Scheit
M. Schlaich
A. Schmidt
L. Schweikhard
R. Seki
S. Sels
E. Siesling
T. Uesaka
机构
[1] Bilfinger Noell GmbH,Institut Pluridisciplinaire Hubert Curien
[2] CEA,Laboratoire Kastler Brossel, Sorbonne Université, CNRS
[3] IRFU,undefined
[4] CERN,undefined
[5] GSI Helmholtzzentrum für Schwerionenforschung GmbH,undefined
[6] CNRS/IN2P3,undefined
[7] Université Louis Pasteur,undefined
[8] KEK,undefined
[9] Instituut voor Kern- en Stralingsfysica,undefined
[10] KU Leuven,undefined
[11] ENS-PSL Research University,undefined
[12] Collège de France,undefined
[13] National Centre for Nuclear Research,undefined
[14] RCNP,undefined
[15] RIKEN Nishina Center,undefined
[16] The Open University of Japan,undefined
[17] Université Paris-Saclay,undefined
[18] CNRS/IN2P3,undefined
[19] IJCLab,undefined
[20] University of Greifswald,undefined
[21] Technische Universität Darmstadt,undefined
[22] IKP,undefined
[23] Technische Universität Darmstadt,undefined
[24] TEMF,undefined
[25] TRIUMF,undefined
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摘要
PUMA, antiProton Unstable Matter Annihilation, is a nuclear-physics experiment at CERN aiming at probing the surface properties of stable and rare isotopes by use of low-energy antiprotons. Low-energy antiprotons offer a very unique sensitivity to the neutron and proton densities at the annihilation site, i.e. in the tail of the nuclear density. Today, no facility provides a collider of low-energy radioactive ions and low-energy antiprotons: while not being a collider experiment, PUMA aims at transporting one billion antiprotons from ELENA, the Extra-Low-ENergy Antiproton ring, to ISOLDE, the rare-isotope beam facility of CERN. PUMA will enable the capture of low-energy antiprotons by short-lived nuclei and the measurement of the emitted radiations. In this way, PUMA will give access to the so-far largely unexplored isospin composition of the nuclear-radial-density tail of radioactive nuclei. The motivations, concept and current status of the PUMA experiment are presented.
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