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Triangle Singularity as the Origin of the a_{1}(1420).

Authors :
Alexeev GD
Alexeev MG
Amoroso A
Andrieux V
Anosov V
Antoshkin A
Augsten K
Augustyniak W
Azevedo CDR
Badełek B
Balestra F
Ball M
Barth J
Beck R
Bedfer Y
Berenguer Antequera J
Bernhard J
Bodlak M
Bradamante F
Bressan A
Burtsev VE
Chang WC
Chatterjee C
Chiosso M
Chumakov AG
Chung SU
Cicuttin A
Correia PMM
Crespo ML
D'Ago D
Dalla Torre S
Dasgupta SS
Dasgupta S
Denisenko I
Denisov OY
Donskov SV
Doshita N
Dreisbach C
Dünnweber W
Dusaev RR
Efremov A
Eversheim PD
Faccioli P
Faessler M
Finger M
Finger M
Fischer H
Franco C
Friedrich JM
Frolov V
Gautheron F
Gavrichtchouk OP
Gerassimov S
Giarra J
Gnesi I
Gorzellik M
Grasso A
Gridin A
Grosse Perdekamp M
Grube B
Guskov A
von Harrach D
Heitz R
Herrmann F
Horikawa N
d'Hose N
Hsieh CY
Huber S
Ishimoto S
Ivanov A
Iwata T
Jandek M
Jary V
Joosten R
Jörg P
Kabuß E
Kaspar F
Kerbizi A
Ketzer B
Khaustov GV
Khokhlov YA
Kisselev Y
Klein F
Koivuniemi JH
Kolosov VN
Kondo Horikawa K
Konorov I
Konstantinov VF
Kotzinian AM
Kouznetsov OM
Koval A
Kral Z
Krinner F
Kulinich Y
Kunne F
Kurek K
Kurjata RP
Kveton A
Lavickova K
Levorato S
Lian YS
Lichtenstadt J
Lin PJ
Longo R
Lyubovitskij VE
Maggiora A
Magnon A
Makins N
Makke N
Mallot GK
Maltsev A
Mamon SA
Marianski B
Martin A
Marzec J
Matoušek J
Matsuda T
Mattson G
Meshcheryakov GV
Meyer M
Meyer W
Mikhailov YV
Mikhasenko M
Mitrofanov E
Mitrofanov N
Miyachi Y
Moretti A
Nagaytsev A
Naim C
Neyret D
Nový J
Nowak WD
Nukazuka G
Nunes AS
Olshevsky AG
Ostrick M
Panzieri D
Parsamyan B
Paul S
Pekeler H
Peng JC
Pešek M
Peshekhonov DV
Pešková M
Pierre N
Platchkov S
Pochodzalla J
Polyakov VA
Pretz J
Quaresma M
Quintans C
Reicherz G
Riedl C
Rudnicki T
Ryabchikov DI
Rybnikov A
Rychter A
Samoylenko VD
Sandacz A
Sarkar S
Savin IA
Sbrizzai G
Schmieden H
Selyunin A
Sinha L
Slunecka M
Smolik J
Srnka A
Steffen D
Stolarski M
Subrt O
Sulc M
Suzuki H
Sznajder P
Tessaro S
Tessarotto F
Thiel A
Tomsa J
Tosello F
Townsend A
Tskhay V
Uhl S
Vasilishin BI
Vauth A
Veit BM
Veloso J
Ventura B
Vidon A
Virius M
Wagner M
Wallner S
Zaremba K
Zavada P
Zavertyaev M
Zemko M
Zemlyanichkina E
Zhao Y
Ziembicki M
Source :
Physical review letters [Phys Rev Lett] 2021 Aug 20; Vol. 127 (8), pp. 082501.
Publication Year :
2021

Abstract

The COMPASS Collaboration experiment recently discovered a new isovector resonancelike signal with axial-vector quantum numbers, the a_{1}(1420), decaying to f_{0}(980)π. With a mass too close to and a width smaller than the axial-vector ground state a_{1}(1260), it was immediately interpreted as a new light exotic meson, similar to the X, Y, Z states in the hidden-charm sector. We show that a resonancelike signal fully matching the experimental data is produced by the decay of the a_{1}(1260) resonance into K^{*}(→Kπ)K[over ¯] and subsequent rescattering through a triangle singularity into the coupled f_{0}(980)π channel. The amplitude for this process is calculated using a new approach based on dispersion relations. The triangle-singularity model is fitted to the partial-wave data of the COMPASS experiment. Despite having fewer parameters, this fit shows a slightly better quality than the one using a resonance hypothesis and thus eliminates the need for an additional resonance in order to describe the data. We thereby demonstrate for the first time in the light-meson sector that a resonancelike structure in the experimental data can be described by rescattering through a triangle singularity, providing evidence for a genuine three-body effect.

Details

Language :
English
ISSN :
1079-7114
Volume :
127
Issue :
8
Database :
MEDLINE
Journal :
Physical review letters
Publication Type :
Academic Journal
Accession number :
34477443
Full Text :
https://doi.org/10.1103/PhysRevLett.127.082501