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1.
Antiproton annihilation at rest in thin solid targets and comparison with Monte Carlo simulations / Amsler, Claude (Stefan Meyer Inst. Subatomare Phys.) ; Breuker, Horst (Wako, RIKEN) ; Bumbar, Marcus (CERN ; Vienna U.) ; Cerwenka, Matti (Stefan Meyer Inst. Subatomare Phys. ; Vienna U.) ; Costantini, Giovanni (Brescia U. ; INFN, Brescia ; INFN, Pavia) ; Ferragut, Rafael (Milan Polytechnic ; INFN, Milan ; Milan U.) ; Fleck, Markus (Stefan Meyer Inst. Subatomare Phys.) ; Giammarchi, Marco (INFN, Milan ; Milan U.) ; Gligorova, Angela (Stefan Meyer Inst. Subatomare Phys.) ; Gosta, Giulia (Brescia U. ; INFN, Brescia ; INFN, Pavia) et al. /Asacusa AD-3
The mechanism of antiproton-nucleus annihilation at rest is not fully understood, despite substantial previous experimental and theoretical work. In this study we used slow extracted, sub-keV antiprotons from the ASACUSA apparatus at CERN to measure the charged particle multiplicities and their energy deposits from antiproton annihilations at rest on three different nuclei: carbon, molybdenum and gold. [...]
arXiv:2407.06721.- Geneva : CERN, 2024-11-17 - 18 p. - Published in : Eur. Phys. J. A 60 (2024) 225 Draft (restricted): PDF; Fulltext: CERN-EP-2024-182 - PDF; document - PDF; 2407.06721 - PDF;
2.
Manipulation and transport of antiprotons for an efficient production of antihydrogen atoms / Tajima, Minori (U. Tokyo (main) ; Wako, RIKEN) ; Kuroda, Naofumi (U. Tokyo (main)) ; Dupre, Pierre (Wako, RIKEN) ; Nagata, Yugo (Wako, RIKEN ; Tokyo U. of Agric. Tech.) ; Radics, Balint (Wako, RIKEN) ; Matsudate, Takuya (U. Tokyo (main)) ; Leali, Marco (U. Brescia) ; Mascagna, Valerio (U. Brescia) ; Venturelli, Luca (U. Brescia) ; Breuker, Horst (CERN) et al.
The ASACUSA collaboration is developing methods to extract and transport antiprotons at 20 eV adiabatically for an efficient production of cold antihydrogen atoms using a direct injection scheme. We successfully observed a high production rate of antihydrogen atoms immediately after the mixing of antiprotons..
2017 - 6 p. - Published in : JPS Conf. Proc. 18 (2017) 011008 Fulltext: PDF;
In : 12th International Conference on Low Energy Antiproton Physics, Kanazawa, Japan, 6 - 11 Mar 2016, pp.011008
3.
Antihydrogen synthesis in a double-cusp trap / Kuroda, Naofumi (Tokyo U., Komaba) ; Tajima, Minori (Tokyo U., Komaba ; RIKEN (main)) ; Radics, Balint (RIKEN (main)) ; Dupré, Pierre (RIKEN (main)) ; Nagata, Yugo (Tokyo U. of Agric. Tech.) ; Kaga, Chikato (ADSM, Hiroshima) ; Kanai, Yasuyuki (RIKEN (main)) ; Leali, Marco (Brescia U. ; INFN, Brescia) ; Rizzini, Evandro Lodi (Brescia U. ; INFN, Brescia) ; Mascagna, Valerio (Brescia U. ; INFN, Brescia) et al.
The ASACUSA CUSP experiment plans a high precision spectroscopy of the ground-state hyperfine splitting of antihydrogen to test CPT symmetry. To perform this, a Rabi-like antiatomic beam method has been developed with a novel double-cusp trap. [...]
2017 - 6 p. - Published in : JPS Conf. Proc. 18 (2017) 011009 Fulltext: PDF;
In : 12th International Conference on Low Energy Antiproton Physics, Kanazawa, Japan, 6 - 11 Mar 2016, pp.011009
4.
Study of Anti-Hydrogen and Plasma Physics 4.Observation of Antiproton Beams and Nonneutral Plasmas / Hori, Masaki (CERN) ; Mohri, Akihiro (Wako, RIKEN ; Osaka Inst. Laser Tech.) ; Fujiwara, Makoto (TRIUMF) ; Kuroda, Naofumi (Wako, RIKEN)
Diagnostics of antiproton beams and nonneutral plasmas are described in this chapter. Parallel plate secondary electron emission detectors are used to non-destructively observe the beam position and intensity without loss. [...]
2004 - Published in : J. Plasma Fusion Res. 80 (2004) 1022-1026
5.
Atomic collision and spectroscopy experiments with ultra-low-energy antiprotons / Torii, Hiroyuki A (Tokyo U., Komaba) ; Nagata, Yugo (Atomic Lab., RIKEN, Saitama) ; Toyoda, Hiroshi (Tokyo U., Komaba) ; Imao, Hiroshi (Atomic Lab., RIKEN, Saitama) ; Kuroda, Naofumi (Tokyo U., Komaba) ; Varentsov, Victor L (Darmstadt, GSI) ; Yamazaki, Yasunori (Tokyo U., Komaba ; Atomic Lab., RIKEN, Saitama) /on behalf of ASACUSA Collaboration
Antiproton, the antiparticle of proton, is a unique projectile in the study of atomic collision physics, which can be treated theoretically either as a 'negative proton' or a 'heavy electron'. Atomic capture of an antiproton will result in formation of a highly excited exotic atom. [...]
2009 - Published in : J. Phys.: Conf. Ser. 185 (2009) 012049
In : 8th Asian International Seminar on Atomic and Molecular Physics, Perth, Australia, 24 – 28 Nov 2008, pp.012049

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