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28 April 2024
 
  » arxiv » 1509.0992

 Article overview



Resonance Production and $pipi$ S-wave in $pi^- + p ightarrow pi^- pi^- pi^+ + p_{recoil}$ at 190 GeV/c
C. Adolph ; R. Akhunzyanov ; M.G. Alexeev ; G.D. Alexeev ; A. Amoroso ; V. Andrieux ; V. Anosov ; W. Augustyniak ; A. Austregesilo ; C.D.R. Azevedo ; B. Badełek ; F. Balestra ; J. Barth ; R. Beck ; Y. Bedfer ; J. Bernhard ; K. Bicker ; E.R. Bielert ; R. Birsa ; J. Bisplinghoff ; M. Bodlak ; M. Boer ; P. Bordalo ; F. Bradamante ; C. Braun ; A. Bressan ; M. Büchele ; E. Burtin ; W.-C. Chang ; M. Chiosso ; I. Choi ; S.U. Chung ; A. Cicuttin ; M.L. Crespo ; Q. Curiel ; S. Dalla Torre ; S.S. Dasgupta ; S. Dasgupta ; O.Yu. Denisov ; L. Dhara ; S.V. Donskov ; N. Doshita ; V. Duic ; W. Dünnweber ; M. Dziewiecki ; A. Efremov ; P.D. Eversheim ; W. Eyrich ; M. Faessler ; A. Ferrero ; M. Finger ; M. Finger jr. ; H. Fischer ; C. Franco ; N. du Fresne von Hohenesche ; J.M. Friedrich ; V. Frolov ; E. Fuchey ; F. Gautheron ; O.P. Gavrichtchouk ; S. Gerassimov ; F. Giordano ; I. Gnesi ; M. Gorzellik ; S. Grabmüller ; A. Grasso ; M. Grosse Perdekamp ; B. Grube ; T. Grussenmeyer ; A. Guskov ; F. Haas ; D. Hahne ; D. von Harrach ; R. Hashimoto ; F.H. Heinsius ; F. Herrmann ; F. Hinterberger ; N. Horikawa ; N. d'Hose ; C.-Y. Hsieh ; S. Huber ; S. Ishimoto ; A. Ivanov ; Yu. Ivanshin ; T. Iwata ; R. Jahn ; V. Jary ; R. Joosten ; P. Jörg ; E. Kabuß ; B. Ketzer ; G.V. Khaustov ; Yu.A. Khokhlov ; Yu. Kisselev ; F. Klein ; K. Klimaszewski ; J.H. Koivuniemi ; V.N. Kolosov ; K. Kondo ; K. Königsmann ; I. Konorov ; V.F. Konstantinov ; A.M. Kotzinian ; O. Kouznetsov ; M. Krämer ; P. Kremser ; F. Krinner ; Z.V. Kroumchtein ; N. Kuchinski ; F. Kunne ; K. Kurek ; R.P. Kurjata ; A.A. Lednev ; A. Lehmann ; M. Levillain ; S. Levorato ; J. Lichtenstadt ; R. Longo ; A. Maggiora ; A. Magnon ; N. Makins ; N. Makke ; G.K. Mallot ; C. Marchand ; B. Marianski ; A. Martin ; J. Marzec ; J. Matoušek ; H. Matsuda ; T. Matsuda ; G. Meshcheryakov ; W. Meyer ; T. Michigami ; Yu.V. Mikhailov ; Y. Miyachi ; P. Montuenga ; A. Nagaytsev ; F. Nerling ; D. Neyret ; V.I. Nikolaenko ; J. Nový ; W.-D. Nowak ; G. Nukazuka ; A.S. Nunes ; A.G. Olshevsky ; I. Orlov ; M. Ostrick ; D. Panzieri ; B. Parsamyan ; S. Paul ; J.-C. Peng ; F. Pereira ; M. Pešek ; D.V. Peshekhonov ; S. Platchkov ; J. Pochodzalla ; V.A. Polyakov ; J. Pretz ; M. Quaresma ; C. Quintans ; S. Ramos ; C. Regali ; G. Reicherz ; C. Riedl ; N.S. Rossiyskaya ; D.I. Ryabchikov ; A. Rychter ; V.D. Samoylenko ; A. Sandacz ; C. Santos ; S. Sarkar ; I.A. Savin ; G. Sbrizzai ; P. Schiavon ; T. Schlüter ; K. Schmidt ; H. Schmieden ; K. Schönning ; S. Schopferer ; A. Selyunin ; O.Yu. Shevchenko ; L. Silva ; L. Sinha ; S. Sirtl ; M. Slunecka ; F. Sozzi ; A. Srnka ; M. Stolarski ; M. Sulc ; H. Suzuki ; A. Szabelski ; T. Szameitat ; P. Sznajder ; S. Takekawa ; S. Tessaro ; F. Tessarotto ; F. Thibaud ; F. Tosello ; V. Tskhay ; S. Uhl ; J. Veloso ; M. Virius ; T. Weisrock ; M. Wilfert ; J. ter Wolbeek ; K. Zaremba ; M. Zavertyaev ; E. Zemlyanichkina ; M. Ziembicki ; A. Zink ;
Date 3 Sep 2015
AbstractThe COMPASS collaboration has collected the currently largest data set on diffractively produced $pi^-pi^-pi^+$ final states using a negative pion beam of 190 GeV/c momentum impinging on a stationary proton target. This data set allows for a systematic partial-wave analysis in 100 bins of three-pion mass, $0.5 < m_{3pi} < 2.5$ GeV/c$^2$ , and in 11 bins of the reduced four-momentum transfer squared, $0.1 < t < 1.0$ (GeV/c)$^2$ . This two-dimensional analysis offers sensitivity to genuine one-step resonance production, i.e. the production of a state followed by its decay, as well as to more complex dynamical effects in nonresonant $3pi$ production. In this paper, we present detailed studies on selected $3pi$ partial waves with $J^{PC} = 0^{-+}$, $1^{++}$, $2^{-+}$, $2^{++}$, and $4^{++}$. In these waves, we observe the well-known ground-state mesons as well as a new narrow axial-vector meson $a_1(1420)$ decaying into $f_0(980) pi$. In addition, we present the results of a novel method to extract the amplitude of the $pi^-pi^+$ subsystem with $I^{G}J^{PC} = 0^+ 0^{++}$ in various partial waves from the $pi^-pi^-pi^+$ data. Evidence is found for correlation of the $f_0(980)$ and $f_0(1500)$ appearing as intermediate $pi^- pi^+$ isobars in the decay of the known $pi(1800)$ and $pi_2(1880)$.
Source arXiv, 1509.0992
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