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Observation of a Resonant Structure in e^{+}e^{-}→K^{+}K^{-}π^{0}π^{0}.

Authors :
Ablikim M
Achasov MN
Adlarson P
Ahmed S
Albrecht M
Amoroso A
An Q
Anita
Bai Y
Bakina O
Baldini Ferroli R
Balossino I
Ban Y
Begzsuren K
Bennett JV
Berger N
Bertani M
Bettoni D
Bianchi F
Biernat J
Bloms J
Boyko I
Briere RA
Cai H
Cai X
Calcaterra A
Cao GF
Cao N
Cetin SA
Chang JF
Chang WL
Chelkov G
Chen DY
Chen G
Chen HS
Chen ML
Chen SJ
Chen XR
Chen YB
Cheng W
Cibinetto G
Cossio F
Cui XF
Dai HL
Dai JP
Dai XC
Dbeyssi A
Dedovich D
Deng ZY
Denig A
Denysenko I
Destefanis M
De Mori F
Ding Y
Dong C
Dong J
Dong LY
Dong MY
Du SX
Fang J
Fang SS
Fang Y
Farinelli R
Fava L
Feldbauer F
Felici G
Feng CQ
Fritsch M
Fu CD
Fu Y
Gao XL
Gao Y
Gao Y
Gao YG
Garzia I
Gersabeck EM
Gilman A
Goetzen K
Gong L
Gong WX
Gradl W
Greco M
Gu LM
Gu MH
Gu S
Gu YT
Guan CY
Guo AQ
Guo LB
Guo RP
Guo YP
Guo YP
Guskov A
Han S
Han TT
Han TZ
Hao XQ
Harris FA
He KL
Heinsius FH
Held T
Heng YK
Himmelreich M
Holtmann T
Hou YR
Hou ZL
Hu HM
Hu JF
Hu T
Hu Y
Huang GS
Huang LQ
Huang XT
Huesken N
Hussain T
Ikegami Andersson W
Imoehl W
Irshad M
Jaeger S
Janchiv S
Ji Q
Ji QP
Ji XB
Ji XL
Jiang HB
Jiang XS
Jiang XY
Jiao JB
Jiao Z
Jin DP
Jin S
Jin Y
Johansson T
Kalantar-Nayestanaki N
Kang XS
Kappert R
Kavatsyuk M
Ke BC
Keshk IK
Khoukaz A
Kiese P
Kiuchi R
Kliemt R
Koch L
Kolcu OB
Kopf B
Kuemmel M
Kuessner M
Kupsc A
Kurth MG
Kühn W
Lane JJ
Lange JS
Larin P
Lavezzi L
Leithoff H
Lellmann M
Lenz T
Li C
Li CH
Li C
Li DM
Li F
Li G
Li HB
Li HJ
Li JC
Li JL
Li K
Li LK
Li L
Li PL
Li PR
Li SY
Li WD
Li WG
Li XH
Li XL
Li XN
Li ZB
Li ZY
Liang H
Liang H
Liang YF
Liang YT
Liao LZ
Libby J
Lin CX
Lin DX
Liu B
Liu BJ
Liu CX
Liu D
Liu DY
Liu FH
Liu F
Liu F
Liu HB
Liu HM
Liu H
Liu H
Liu JB
Liu JY
Liu K
Liu KY
Liu K
Liu L
Liu LY
Liu Q
Liu SB
Liu S
Liu T
Liu X
Liu XY
Liu YB
Liu ZA
Liu ZQ
Long YF
Lou XC
Lu HJ
Lu JD
Lu JG
Lu XL
Lu Y
Lu YP
Luo CL
Luo MX
Luo PW
Luo T
Luo XL
Lusso S
Lyu XR
Ma FC
Ma HL
Ma LL
Ma MM
Ma QM
Ma RQ
Ma RT
Ma XN
Ma XX
Ma XY
Ma YM
Maas FE
Maggiora M
Maldaner S
Malde S
Malik QA
Mangoni A
Mao YJ
Mao ZP
Marcello S
Meng ZX
Messchendorp JG
Mezzadri G
Min J
Min TJ
Mitchell RE
Mo XH
Mo YJ
Morales Morales C
Muchnoi NY
Muramatsu H
Nakhoul S
Nefedov Y
Nerling F
Nikolaev IB
Ning Z
Nisar S
Olsen SL
Ouyang Q
Pacetti S
Pan X
Pan Y
Papenbrock M
Pathak A
Patteri P
Pelizaeus M
Peng HP
Peters K
Pettersson J
Ping JL
Ping RG
Pitka A
Poling R
Prasad V
Qi H
Qi HR
Qi M
Qi TY
Qian S
Qiao CF
Qin LQ
Qin XP
Qin XS
Qin ZH
Qiu JF
Qu SQ
Rashid KH
Ravindran K
Redmer CF
Richter M
Rivetti A
Rodin V
Rolo M
Rong G
Rosner C
Rump M
Sarantsev A
Savrié M
Schelhaas Y
Schnier C
Schoenning K
Shan DC
Shan W
Shan XY
Shao M
Shen CP
Shen PX
Shen XY
Sheng HY
Shi HC
Shi RS
Shi X
Shi XD
Song JJ
Song QQ
Song XY
Song YX
Sosio S
Sowa C
Spataro S
Sui FF
Sun GX
Sun JF
Sun L
Sun SS
Sun T
Sun WY
Sun YJ
Sun YK
Sun YZ
Sun ZJ
Sun ZT
Tan YX
Tang CJ
Tang GY
Tang J
Tang X
Thoren V
Tsednee B
Uman I
Wang B
Wang BL
Wang CW
Wang DY
Wang HP
Wang K
Wang LL
Wang LS
Wang M
Wang MZ
Wang M
Wang PL
Wang WP
Wang X
Wang XF
Wang XL
Wang Y
Wang Y
Wang YD
Wang YF
Wang YQ
Wang Z
Wang ZG
Wang ZY
Wang Z
Wang Z
Weber T
Wei DH
Weidenkaff P
Weidner F
Wen HW
Wen SP
White DJ
Wiedner U
Wilkinson G
Wolke M
Wollenberg L
Wu JF
Wu LH
Wu LJ
Wu X
Wu Z
Xia L
Xiao H
Xiao SY
Xiao YJ
Xiao ZJ
Xie YG
Xie YH
Xing TY
Xiong XA
Xu GF
Xu JJ
Xu QJ
Xu W
Xu XP
Yan L
Yan L
Yan WB
Yan WC
Yan X
Yang HJ
Yang HX
Yang L
Yang RX
Yang SL
Yang YH
Yang YX
Yang Y
Yang Z
Ye M
Ye MH
Yin JH
You ZY
Yu BX
Yu CX
Yu G
Yu JS
Yu T
Yuan CZ
Yuan W
Yuan XQ
Yuan Y
Yue CX
Yuncu A
Zafar AA
Zeng Y
Zhang BX
Zhang BY
Zhang CC
Zhang DH
Zhang G
Zhang HH
Zhang HY
Zhang JL
Zhang JQ
Zhang JW
Zhang JY
Zhang JZ
Zhang J
Zhang J
Zhang L
Zhang L
Zhang S
Zhang SF
Zhang TJ
Zhang XY
Zhang Y
Zhang YH
Zhang YT
Zhang Y
Zhang Y
Zhang Y
Zhang ZH
Zhang ZY
Zhao G
Zhao J
Zhao JW
Zhao JY
Zhao JZ
Zhao L
Zhao L
Zhao MG
Zhao Q
Zhao SJ
Zhao TC
Zhao YB
Zhao ZG
Zhemchugov A
Zheng B
Zheng JP
Zheng Y
Zheng YH
Zhong B
Zhong C
Zhou L
Zhou LP
Zhou Q
Zhou X
Zhou XK
Zhou XR
Zhu AN
Zhu J
Zhu K
Zhu KJ
Zhu SH
Zhu WJ
Zhu XL
Zhu YC
Zhu YS
Zhu ZA
Zhuang J
Zou BS
Zou JH
Source :
Physical review letters [Phys Rev Lett] 2020 Mar 20; Vol. 124 (11), pp. 112001.
Publication Year :
2020

Abstract

A partial-wave analysis is performed for the process e^{+}e^{-}→K^{+}K^{-}π^{0}π^{0} at the center-of-mass energies ranging from 2.000 to 2.644 GeV. The data samples of e^{+}e^{-} collisions, collected by the BESIII detector at the BEPCII collider with a total integrated luminosity of 300  pb^{-1}, are analyzed. The total Born cross sections for the process e^{+}e^{-}→K^{+}K^{-}π^{0}π^{0}, as well as the Born cross sections for the subprocesses e^{+}e^{-}→ϕπ^{0}π^{0}, K^{+}(1460)K^{-}, K_{1}^{+}(1400)K^{-}, K_{1}^{+}(1270)K^{-}, and K^{*+}(892)K^{*-}(892), are measured versus the center-of-mass energy. The corresponding results for e^{+}e^{-}→K^{+}K^{-}π^{0}π^{0} and ϕπ^{0}π^{0} are consistent with those of BABAR with better precision. By analyzing the cross sections for the four subprocesses, K^{+}(1460)K^{-}, K_{1}^{+}(1400)K^{-}, K_{1}^{+}(1270)K^{-}, and K^{*+}(892)K^{*-}(892), a structure with mass M=(2126.5±16.8±12.4)  MeV/c^{2} and width Γ=(106.9±32.1±28.1)  MeV is observed with an overall statistical significance of 6.3σ, although with very limited significance in the subprocesses e^{+}e^{-}→K_{1}^{+}(1270)K^{-} and K^{*+}(892)K^{*-}(892). The resonant parameters of the observed structure suggest it can be identified with the ϕ(2170), thus the results provide valuable input to the internal nature of the ϕ(2170).

Details

Language :
English
ISSN :
1079-7114
Volume :
124
Issue :
11
Database :
MEDLINE
Journal :
Physical review letters
Publication Type :
Academic Journal
Accession number :
32242687
Full Text :
https://doi.org/10.1103/PhysRevLett.124.112001